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  • 1
    Publication Date: 2007-05-21
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  • 2
    Publication Date: 2007-03-18
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  • 3
    Publication Date: 2007-06-03
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  • 4
    Publication Date: 2007-02-18
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  • 5
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    Publication Date: 2014-12-18
    Description: Nature Materials 14, 13 (2015). doi:10.1038/nmat4189 Author: Pep Pàmies
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  • 6
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    Publication Date: 2014-12-18
    Description: Nature Materials 14, 16 (2015). doi:10.1038/nmat4185 Author: Philip Ball
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  • 7
    Publication Date: 2014-12-18
    Description: Nature Materials 14, 43 (2015). doi:10.1038/nmat4088 Authors: Thomas C. Fitzgibbons, Malcolm Guthrie, En-shi Xu, Vincent H. Crespi, Stephen K. Davidowski, George D. Cody, Nasim Alem & John V. Badding Low-dimensional carbon nanomaterials such as fullerenes, nanotubes, graphene and diamondoids have extraordinary physical and chemical properties. Compression-induced polymerization of aromatic molecules could provide a viable synthetic route to ordered carbon nanomaterials, but despite almost a century of study this approach has produced only amorphous products. Here we report recovery to ambient pressure of macroscopic quantities of a crystalline one- dimensional sp3carbon nanomaterial formed by high-pressure solid-state reaction of benzene. X-ray and neutron diffraction, Raman spectroscopy, solid-state NMR, transmission electron microscopy and first-principles calculations reveal close- packed bundles of subnanometre-diameter sp3-bonded carbon threads capped with hydrogen, crystalline in two dimensions and short-range ordered in the third. These nanothreads promise extraordinary properties such as strength and stiffness higher than that of sp2carbon nanotubes or conven tional high-strength polymers. They may be the first member of a new class of ordered sp3 nanomaterials synthesized by kinetic control of high-pressure solid-state reactions.
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  • 8
    Publication Date: 2014-12-18
    Description: Nature Materials 14, 61 (2015). doi:10.1038/nmat4109 Authors: Lang Feng, Bezia Laderman, Stefano Sacanna & Paul Chaikin In polymer–colloid mixtures, non-adsorbing polymers dispersed with much larger colloids provide a universal yet specific entropic attraction between the colloids. Such so-called depletion interaction arises from an osmotic-pressure imbalance caused by the polymers and is considered to be independent of temperature. Here we show that, for the most commonly used polymer–colloid depletion systems, the polymer undergoes a crossover from non-adsorbing to adsorbing and that, consequently, the effective colloidal interactions depend on temperature. We also find that a combination of the enthalpic (polymer bridging) and entropic (polymer exclusion) interactions, both attractive, leads to a re-entrant regime where the colloids are dispersed and form solids both on heating and on cooling. We provide a simple model to explain the observed transitions and to fill the theoretical gap at the polymer-adsorption crossover. Our findings open possibilities for colloidal self-assembly, the formation of colloidal crystals and glasses, and the behaviour of temperature-controlled viscoelastic materials.
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  • 9
    Publication Date: 2014-12-18
    Description: Nature Materials 14, 73 (2015). doi:10.1038/nmat4117 Authors: Daichi Matsunami, Asaya Fujita, Koshi Takenaka & Mika Kano
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  • 10
    Publication Date: 2014-12-18
    Description: Nature Materials 14, 79 (2015). doi:10.1038/nmat4119 Authors: Ruijuan Xu, Shi Liu, Ilya Grinberg, J. Karthik, Anoop R. Damodaran, Andrew M. Rappe & Lane W. Martin
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  • 11
    Publication Date: 2014-12-18
    Description: Nature Materials 14, 18 (2015). doi:10.1038/nmat4183 Author: Marc de Boissieu Computer simulations of one-component three-dimensional icosahedral quasicrystals will help to understand the mechanisms that may stabilize them in experiments.
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  • 12
    Publication Date: 2014-12-18
    Description: Nature Materials 14, 23 (2015). doi:10.1038/nmat4089 Authors: Ulrike G. K. Wegst, Hao Bai, Eduardo Saiz, Antoni P. Tomsia & Robert O. Ritchie
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  • 13
    Publication Date: 2014-12-18
    Description: Nature Materials 14, 87 (2015). doi:10.1038/nmat4114 Authors: Alexandre Teulle, Michel Bosman, Christian Girard, Kargal L. Gurunatha, Mei Li, Stephen Mann & Erik Dujardin
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  • 14
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    Publication Date: 2014-12-18
    Description: Nature Materials 14, 19 (2015). doi:10.1038/nmat4180 Author: Eric M. Furst Janus ellipsoids self-assemble into self-limiting fibres that can be reversibly actuated by applying an electric field.
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  • 15
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    Publication Date: 2014-12-18
    Description: Nature Materials 14, 13 (2015). doi:10.1038/nmat4188 Author: Luigi Martiradonna
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  • 16
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    Publication Date: 2014-12-18
    Description: Nature Materials 14, 13 (2015). doi:10.1038/nmat4190 Author: Alison Stoddart
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  • 17
    Publication Date: 2014-12-18
    Description: Nature Materials 14, 37 (2015). doi:10.1038/nmat4116 Authors: Makoto Hashimoto, Elizabeth A. Nowadnick, Rui-Hua He, Inna M. Vishik, Brian Moritz, Yu He, Kiyohisa Tanaka, Robert G. Moore, Donghui Lu, Yoshiyuki Yoshida, Motoyuki Ishikado, Takao Sasagawa, Kazuhiro Fujita, Shigeyuki Ishida, Shinichi Uchida, Hiroshi Eisaki, Zahid Hussain, Thomas P. Devereaux & Zhi-Xun Shen In the high-temperature (Tc) cuprate superconductors, a growing body of evidence suggests that the pseudogap phase, existing below the pseudogap temperature T∗, is characterized by some broken electronic symmetries distinct from those associated with superconductivity. In particular, recent scattering experiments have suggested that charge ordering competes with superconductivity. However, no direct link of an interplay between the two phases has been identified from the important low-energy excitations. Here, we report an antagonistic singularity at Tc in the spectral weight of Bi2Sr2CaCu2O8+δ as compelling evidence for phase competition, which persists up to a high hole concentration p ~ 0.22. Comparison with theoretical calculations confirms that the singularity is a signature of competition between the order parameters for the pseudogap and superconductivity. The observation of the spectroscopic singularity at finite temperatures over a wide doping range provides new insights into the nature of the competitive interplay between the two orders and the complex phase diagram near the pseudogap critical point.
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  • 18
    Publication Date: 2014-12-18
    Description: Nature Materials 14, 48 (2015). doi:10.1038/nmat4113 Authors: Tania Rodenas, Ignacio Luz, Gonzalo Prieto, Beatriz Seoane, Hozanna Miro, Avelino Corma, Freek Kapteijn, Francesc X. Llabrés i Xamena & Jorge Gascon Composites incorporating two-dimensional nanostructures within polymeric matrices have potential as functional components for several technologies, including gas separation. Prospectively, employing metal–organic frameworks (MOFs) as versatile nanofillers would notably broaden the scope of functionalities. However, synthesizing MOFs in the form of freestanding nanosheets has proved challenging. We present a bottom-up synthesis strategy for dispersible copper 1,4-benzenedicarboxylate MOF lamellae of micrometre lateral dimensions and nanometre thickness. Incorporating MOF nanosheets into polymer matrices endows the resultant composites with outstanding CO2 separation performance from CO2/CH4 gas mixtures, together with an unusual and highly desired increase in the separation selectivity with pressure. As revealed by tomographic focused ion beam scanning electron microscopy, the unique separation behaviour stems from a superior occupation of the membrane cross-section by the MOF nanosheets as compared with isotropic crystals, which improves the efficiency of molecular discrimination and eliminates unselective permeation pathways. This approach opens the door to ultrathin MOF–polymer composites for various applications.
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  • 19
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    Publication Date: 2012-09-25
    Description: Inspiring interfaces Nature Materials 11, 827 (2012). doi:10.1038/nmat3440 The arts and social sciences communities could enhance the commercial prospects of new materials.
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  • 20
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    Publication Date: 2012-09-25
    Description: Interior design Nature Materials 11, 829 (2012). doi:10.1038/nmat3445 Author: Alison Stoddart
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  • 21
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    Publication Date: 2012-09-25
    Description: Restrained fingering Nature Materials 11, 829 (2012). doi:10.1038/nmat3446 Author: Pep Pàmies
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  • 22
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    Publication Date: 2012-09-25
    Description: Superlenses sharpen up Nature Materials 11, 829 (2012). doi:10.1038/nmat3444 Author: Joerg Heber
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  • 23
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    Publication Date: 2012-09-25
    Description: Nanoparticle immunotherapy: Combo combat Nature Materials 11, 831 (2012). doi:10.1038/nmat3434 Author: C. Jeffrey Brinker Nanoparticle-enabled, sustained delivery of soluble hydrophilic cytokines and hydrophobic inhibitors engages the innate and adaptive immune systems to fight cancer.
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  • 24
    Publication Date: 2012-09-25
    Description: Metal/molecule interfaces: Dispersion forces unveiled Nature Materials 11, 834 (2012). doi:10.1038/nmat3436 Author: Jan van Ruitenbeek The role of dispersion forces in molecule–metal bonding has often been underestimated or ignored. Two groups now report independent single-molecule experiments that illustrate and quantify the effect of such interactions on bonding strength.
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  • 25
    Publication Date: 2012-09-25
    Description: Oxide interfaces: Instrumental insights Nature Materials 11, 833 (2012). doi:10.1038/nmat3425 Authors: James M. Rondinelli & Steven J. May A powerful new set of tools combining artificial synthesis and in situ characterization of correlated oxides unites the processes of materials discovery and understanding, and reveals the origin of a dimensionality-induced metal–insulator transition.
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  • 26
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    Publication Date: 2012-09-25
    Description: Organic semiconductors: No more breaks for electrons Nature Materials 11, 836 (2012). doi:10.1038/nmat3427 Author: Anna Köhler In semiconducting polymers, the mobility of negative charges is typically much smaller than that of positive charges. Identification of a universal electron-trap level that is associated with water complexation now clarifies this difference and provides guidelines for the design of improved organic semiconductors.
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  • 27
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    Publication Date: 2012-09-25
    Description: Crystal nucleation: Nucleus in a droplet Nature Materials 11, 838 (2012). doi:10.1038/nmat3441 Author: Peter G. Vekilov Real-time transmission electron microscopy shows that the formation of crystal nuclei of organic molecules in solution occurs inside dense liquid nanoclusters.
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  • 28
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    Publication Date: 2012-09-25
    Description: Mechanical properties: Overcoming old barriers Nature Materials 11, 837 (2012). doi:10.1038/nmat3423 Author: G. J. Ackland Dislocation motion is crucial to the deformation of materials. The discovery that at least at lower temperatures quantum effects play an important role in this process considerably improves quantitative predictions of mechanical properties.
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  • 29
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    Publication Date: 2012-09-25
    Description: Photonics: Upconversion goes broadband Nature Materials 11, 842 (2012). doi:10.1038/nmat3426 Authors: Xiaoji Xie & Xiaogang Liu Upconversion nanoparticles that convert low-energy light into high-energy light hold promise for boosting solar-cell efficiency and enabling highly sensitive biological assays. But their spectral conversion under broadband excitation has been challenging, until now.
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  • 30
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    Publication Date: 2012-09-25
    Description: Soft robotics: Bionic jellyfish Nature Materials 11, 841 (2012). doi:10.1038/nmat3438 Author: Viola Vogel A polymeric tissue-engineered structure capable of swimming in a similar manner to a jellyfish is created by mimicking the structural design, stroke kinematics and fluid dynamics of the organism.
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  • 31
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    Publication Date: 2012-09-25
    Description: Rare-earth ion singled out Nature Materials 11, 829 (2012). doi:10.1038/nmat3447 Author: Andrea Taroni
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  • 32
    Publication Date: 2012-09-25
    Description: Quantum effect on thermally activated glide of dislocations Nature Materials 11, 845 (2012). doi:10.1038/nmat3401 Authors: Laurent Proville, David Rodney & Mihai-Cosmin Marinica Crystal plasticity involves the motion of dislocations under stress. So far, atomistic simulations of this process have predicted Peierls stresses, the stress needed to overcome the crystal resistance in the absence of thermal fluctuations, of more than twice the experimental values, a discrepancy best-known in body-centred cubic crystals. Here we show that a large contribution arises from the crystal zero-point vibrations, which ease dislocation motion below typically half the Debye temperature. Using Wigner’s quantum transition state theory in atomistic models of crystals, we found a large decrease of the kink-pair formation enthalpy due to the quantization of the crystal vibrational modes. Consequently, the flow stress predicted by Orowan’s law is strongly reduced when compared with its classical approximation and in much closer agreement with experiments. This work advocates that quantum mechanics should be accounted for in simulations of materials and not only at very low temperatures or in light-atom systems.
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  • 33
    Publication Date: 2012-09-25
    Description: Spin excitations in a single La2CuO4 layer Nature Materials 11, 850 (2012). doi:10.1038/nmat3409 Authors: M. P. M. Dean, R. S. Springell, C. Monney, K. J. Zhou, J. Pereiro, I. Božović, B. Dalla Piazza, H. M. Rønnow, E. Morenzoni, J. van den Brink, T. Schmitt & J. P. Hill Cuprates and other high-temperature superconductors consist of two-dimensional layers that are crucial to their properties. The dynamics of the quantum spins in these layers lie at the heart of the mystery of the cuprates. In bulk cuprates such as La2CuO4, the presence of a weak coupling between the two-dimensional layers stabilizes a three-dimensional magnetic order up to high temperatures. In a truly two-dimensional system however, thermal spin fluctuations melt long-range order at any finite temperature. Here, we measure the spin response of isolated layers of La2CuO4 that are only one-unit-cell-thick. We show that coherent magnetic excitations, magnons, known from the bulk order, persist even in a single layer of La2CuO4, with no evidence for more complex correlations such as resonating valence bond correlations. These magnons are, therefore, well described by spin-wave theory (SWT). On the other hand, we also observe a high-energy magnetic continuum in the isotropic magnetic response that is not well described by two-magnon SWT, or indeed any existing theories.
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  • 34
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    Publication Date: 2012-09-25
    Description: Material witness: Bringing crystals to life Nature Materials 11, 840 (2012). doi:10.1038/nmat3437 Author: Philip Ball
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  • 35
    Publication Date: 2012-09-25
    Description: Quantum many-body interactions in digital oxide superlattices Nature Materials 11, 855 (2012). doi:10.1038/nmat3405 Authors: Eric J. Monkman, Carolina Adamo, Julia A. Mundy, Daniel E. Shai, John W. Harter, Dawei Shen, Bulat Burganov, David A. Muller, Darrell G. Schlom & Kyle M. Shen Controlling the electronic properties of interfaces has enormous scientific and technological implications and has been recently extended from semiconductors to complex oxides that host emergent ground states not present in the parent materials. These oxide interfaces present a fundamentally new opportunity where, instead of conventional bandgap engineering, the electronic and magnetic properties can be optimized by engineering quantum many-body interactions. We use an integrated oxide molecular-beam epitaxy and angle-resolved photoemission spectroscopy system to synthesize and investigate the electronic structure of superlattices of the Mott insulator LaMnO3 and the band insulator SrMnO3. By digitally varying the separation between interfaces in (LaMnO3)2n/(SrMnO3)n superlattices with atomic-layer precision, we demonstrate that quantum many-body interactions are enhanced, driving the electronic states from a ferromagnetic polaronic metal to a pseudogapped insulating ground state. This work demonstrates how many-body interactions can be engineered at correlated oxide interfaces, an important prerequisite to exploiting such effects in novel electronics.
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  • 36
    Publication Date: 2012-09-25
    Description: Van der Waals interactions at metal/organic interfaces at the single-molecule level Nature Materials 11, 872 (2012). doi:10.1038/nmat3403 Authors: Sriharsha V. Aradhya, Michael Frei, Mark S. Hybertsen & L. Venkataraman Van der Waals (vdW) interaction, and its subtle interplay with chemically specific interactions and surface roughness at metal/organic interfaces, is critical to the understanding of structure–function relations in diverse areas, including catalysis, molecular electronics and self-assembly. However, vdW interactions remain challenging to characterize directly at the fundamental, single-molecule level both in experiments and in first principles calculations with accurate treatment of the non-local, London dispersion interactions. In particular, for metal/organic interfaces, efforts so far have largely focused on model systems consisting of adsorbed molecules on flat metallic surfaces with minimal specific chemical interaction. Here we show, through measurements of single-molecule mechanics, that pyridine derivatives can bind to nanostructured Au electrodes through an additional binding mechanism beyond the chemically specific N–Au donor–acceptor bond. Using density functional theory simulations we show that vdW interactions between the pyridine ring and Au electrodes can play a key role in the junction mechanics. These measurements thus provide a quantitative characterization of vdW interactions at metal/organic interfaces at the single-molecule level.
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  • 37
    Publication Date: 2012-09-25
    Description: Heterogeneous nucleation of organic crystals mediated by single-molecule templates Nature Materials 11, 877 (2012). doi:10.1038/nmat3408 Authors: Koji Harano, Tatsuya Homma, Yoshiko Niimi, Masanori Koshino, Kazu Suenaga, Ludwik Leibler & Eiichi Nakamura Fundamental understanding of how crystals of organic molecules nucleate on a surface remains limited because of the difficulty of probing rare events at the molecular scale. Here we show that single-molecule templates on the surface of carbon nanohorns can nucleate the crystallization of two organic compounds from a supersaturated solution by mediating the formation of disordered and mobile molecular nanoclusters on the templates. Single-molecule real-time transmission electron microscopy indicates that each nanocluster consists of a maximum of approximately 15 molecules, that there are fewer nanoclusters than crystals in solution, and that in the absence of templates physisorption, but not crystal formation, occurs. Our findings suggest that template-induced heterogeneous nucleation mechanistically resembles two-step homogeneous nucleation.
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  • 38
    Publication Date: 2012-09-25
    Description: Unification of trap-limited electron transport in semiconducting polymers Nature Materials 11, 882 (2012). doi:10.1038/nmat3384 Authors: H. T. Nicolai, M. Kuik, G. A. H. Wetzelaer, B. de Boer, C. Campbell, C. Risko, J. L. Brédas & P. W. M. Blom
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  • 39
    Publication Date: 2012-09-25
    Description: Probing oxygen vacancy concentration and homogeneity in solid-oxide fuel-cell cathode materials on the subunit-cell level Nature Materials 11, 888 (2012). doi:10.1038/nmat3393 Authors: Young-Min Kim, Jun He, Michael D. Biegalski, Hailemariam Ambaye, Valeria Lauter, Hans M. Christen, Sokrates T. Pantelides, Stephen J. Pennycook, Sergei V. Kalinin & Albina Y. Borisevich
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  • 40
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    Publication Date: 2012-09-25
    Description: Stepping up MoS2 integration Nature Materials 11, 829 (2012). doi:10.1038/nmat3448 Author: Christian Martin
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  • 41
    Publication Date: 2012-09-25
    Description: Graphene field-effect transistors as room-temperature terahertz detectors Nature Materials 11, 865 (2012). doi:10.1038/nmat3417 Authors: L. Vicarelli, M. S. Vitiello, D. Coquillat, A. Lombardo, A. C. Ferrari, W. Knap, M. Polini, V. Pellegrini & A. Tredicucci The unique optoelectronic properties of graphene make it an ideal platform for a variety of photonic applications, including fast photodetectors, transparent electrodes in displays and photovoltaic modules, optical modulators, plasmonic devices, microcavities, and ultra-fast lasers. Owing to its high carrier mobility, gapless spectrum and frequency-independent absorption, graphene is a very promising material for the development of detectors and modulators operating in the terahertz region of the electromagnetic spectrum (wavelengths in the hundreds of micrometres), still severely lacking in terms of solid-state devices. Here we demonstrate terahertz detectors based on antenna-coupled graphene field-effect transistors. These exploit the nonlinear response to the oscillating radiation field at the gate electrode, with contributions of thermoelectric and photoconductive origin. We demonstrate room temperature operation at 0.3 THz, showing that our devices can already be used in realistic settings, enabling large-area, fast imaging of macroscopic samples.
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  • 42
    Publication Date: 2012-09-25
    Description: Combination delivery of TGF-β inhibitor and IL-2 by nanoscale liposomal polymeric gels enhances tumour immunotherapy Nature Materials 11, 895 (2012). doi:10.1038/nmat3355 Authors: Jason Park, Stephen H. Wrzesinski, Eric Stern, Michael Look, Jason Criscione, Ragy Ragheb, Steven M. Jay, Stacey L. Demento, Atu Agawu, Paula Licona Limon, Anthony F. Ferrandino, David Gonzalez, Ann Habermann, Richard A. Flavell & Tarek M. Fahmy
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  • 43
    Publication Date: 2012-09-25
    Description: A ferroelectric memristor Nature Materials 11, 860 (2012). doi:10.1038/nmat3415 Authors: André Chanthbouala, Vincent Garcia, Ryan O. Cherifi, Karim Bouzehouane, Stéphane Fusil, Xavier Moya, Stéphane Xavier, Hiroyuki Yamada, Cyrile Deranlot, Neil D. Mathur, Manuel Bibes, Agnès Barthélémy & Julie Grollier Memristors are continuously tunable resistors that emulate biological synapses. Conceptualized in the 1970s, they traditionally operate by voltage-induced displacements of matter, although the details of the mechanism remain under debate. Purely electronic memristors based on well-established physical phenomena with albeit modest resistance changes have also emerged. Here we demonstrate that voltage-controlled domain configurations in ferroelectric tunnel barriers yield memristive behaviour with resistance variations exceeding two orders of magnitude and a 10 ns operation speed. Using models of ferroelectric-domain nucleation and growth, we explain the quasi-continuous resistance variations and derive a simple analytical expression for the memristive effect. Our results suggest new opportunities for ferroelectrics as the hardware basis of future neuromorphic computational architectures.
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  • 44
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    Publication Date: 2012-12-04
    Description: Nature Materials 11, 995 (2012). doi:10.1038/nmat3519 This year marks a quarter of a century since the birth of photonic crystals. Overcoming early difficulties, the field has made a range of technological developments possible as well as the emergence of new science at the interface between condensed-matter physics and photonics.
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  • 45
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    Publication Date: 2012-12-04
    Description: Nature Materials 11, 1000 (2012). doi:10.1038/nmat3504 Twenty five years since the birth of the field of photonic crystals, Eli Yablonovitch talks to Nature Materials about his pioneering contributions to the field and his vision for nanophotonics.
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  • 46
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    Publication Date: 2012-12-04
    Description: Nature Materials 11, 1002 (2012). doi:10.1038/nmat3511 Author: Pep Pàmies
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  • 47
    Publication Date: 2012-12-04
    Description: Nature Materials 11, 1004 (2012). doi:10.1038/nmat3494 Author: Kathryn J. Wahl Friction classically decreases with decreasing load. Nanoscale measurements on chemically modified graphite now show an opposite trend related to local deformation, which could serve as a probe for determining the exfoliation energy of layered materials.
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  • 48
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    Publication Date: 2012-12-04
    Description: Nature Materials 11, 1006 (2012). doi:10.1038/nmat3501 Author: Jon Dobson A magnetic on/off switch for cell-death signalling in cancer cells is developed using antibodies conjugated to magnetic nanoparticles. The control of cell death in in vivo systems is demonstrated by a tell-tale morphological change within the zebrafish.
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  • 49
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    Publication Date: 2012-12-04
    Description: Nature Materials 11, 1002 (2012). doi:10.1038/nmat3515 Author: Christian Martin
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  • 50
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    Publication Date: 2012-12-04
    Description: Nature Materials 11, 996 (2012). doi:10.1038/nmat3493 Authors: Igor Aharonovich & Olga Shenderova
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  • 51
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    Publication Date: 2012-12-04
    Description: Nature Materials 11, 1011 (2012). doi:10.1038/nmat3508 Author: Philip Ball
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  • 52
    Publication Date: 2012-12-04
    Description: Nature Materials 11, 1017 (2012). doi:10.1038/nmat3442 Authors: Kevin Vynck, Matteo Burresi, Francesco Riboli & Diederik S. Wiersma Elaborating reliable and versatile strategies for efficient light coupling between free space and thin films is of crucial importance for new technologies in energy efficiency. Nanostructured materials have opened unprecedented opportunities for light management, notably in thin-film solar cells. Efficient coherent light trapping has been accomplished through the careful design of plasmonic nanoparticles and gratings, resonant dielectric particles and photonic crystals. Alternative approaches have used randomly textured surfaces as strong light diffusers to benefit from their broadband and wide-angle properties. Here, we propose a new strategy for photon management in thin films that combines both advantages of an efficient trapping due to coherent optical effects and broadband/wide-angle properties due to disorder. Our approach consists of the excitation of electromagnetic modes formed by multiple light scattering and wave interference in two-dimensional random media. We show, by numerical calculations, that the spectral and angular responses of thin films containing disordered photonic patterns are intimately related to the in-plane light transport process and can be tuned through structural correlations. Our findings, which are applicable to all waves, are particularly suited for improving the absorption efficiency of thin-film solar cells and can provide a new approach for high-extraction-efficiency light-emitting diodes.
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  • 53
    Publication Date: 2012-12-04
    Description: Nature Materials 11, 1044 (2012). doi:10.1038/nmat3454 Authors: Phillip Christopher, Hongliang Xin, Andiappan Marimuthu & Suljo Linic
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  • 54
    Publication Date: 2012-12-04
    Description: Nature Materials 11, 1059 (2012). doi:10.1038/nmat3455 Authors: Elke Verheyen, Lennart Joos, Kristof Van Havenbergh, Eric Breynaert, Nataliia Kasian, Elena Gobechiya, Kristof Houthoofd, Charlotte Martineau, Manuel Hinterstein, Francis Taulelle, Veronique Van Speybroeck, Michel Waroquier, Sara Bals, Gustaaf Van Tendeloo, Christine E. A. Kirschhock & Johan A. Martens
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  • 55
    Publication Date: 2012-12-04
    Description: Nature Materials 11, 1081 (2012). doi:10.1038/nmat3461 Authors: Yasuhiro Ikezoe, Gosuke Washino, Takashi Uemura, Susumu Kitagawa & Hiroshi Matsui
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  • 56
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    Publication Date: 2012-08-24
    Description: A decade in numbers Nature Materials 11, 743 (2012). doi:10.1038/nmat3424 On the tenth anniversary of the launch of Nature Materials, we look back at how authors, reviewers and editors have contributed to the journal by evaluating data such as decision types and times, and the geographical share of submitted and published manuscripts.
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  • 57
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    Publication Date: 2012-08-24
    Description: Material witness: Shock relief Nature Materials 11, 747 (2012). doi:10.1038/nmat3411 Author: Philip Ball
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  • 58
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    Publication Date: 2012-08-24
    Description: Mesoporous silica: Holey quasicrystals Nature Materials 11, 749 (2012). doi:10.1038/nmat3414 Author: Sarah H. Tolbert The self-assembly of surfactant micelles in the formation of templated mesoporous silicas can be tuned to produce mesoporous materials with quasicrystalline ordering, proving that quasicrystals are indeed a general form of ordered but non-periodic matter.
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  • 59
    Publication Date: 2012-08-24
    Description: Electronics: Electronic materials through time Nature Materials 11, 751 (2012). doi:10.1038/nmat3407 Authors: B. Keimer, J. Maier & J. Mannhart Complex materials that challenge existing electronic materials are the subject of intense research. In particular, correlated electron effects and ionic properties, and their interplay, promise new functionalities.
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  • 60
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    Publication Date: 2012-08-24
    Description: Hybrid electrolytes Nature Materials 11, 745 (2012). doi:10.1038/nmat3419 Author: Vincent J. Dusastre
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  • 61
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    Publication Date: 2012-08-24
    Description: Understanding endocytosis Nature Materials 11, 745 (2012). doi:10.1038/nmat3421 Author: Pep Pàmies
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  • 62
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    Publication Date: 2012-08-24
    Description: Tissue engineering: Perfusable vascular networks Nature Materials 11, 746 (2012). doi:10.1038/nmat3412 Author: Gabor Forgacs A rapid vascular casting approach that uses carbohydrate glass as a sacrificial template allows tissues to be built that can be kept alive for longer in the laboratory until needed for transplantation.
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  • 63
    Publication Date: 2012-08-24
    Description: Dielectric nanoparticles: Polarizability reveals identity Nature Materials 11, 748 (2012). doi:10.1038/nmat3410 Authors: Enrique Sahagún & Juan José Sáenz Improvements in electrostatic force microscopy now make it possible to measure the dielectric constant of isolated low-polarizable nanoparticles and viruses, thus enabling the label-free identification of dielectric nanomaterials of similar morphology.
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  • 64
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    Publication Date: 2012-08-24
    Description: Up and away Nature Materials 11, 745 (2012). doi:10.1038/nmat3422 Author: Christian Martin
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  • 65
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    Publication Date: 2012-08-24
    Description: Plasmonics making waves Nature Materials 11, 745 (2012). doi:10.1038/nmat3418 Author: Joerg Heber
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  • 66
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    Publication Date: 2012-08-24
    Description: Block and deliver Nature Materials 11, 745 (2012). doi:10.1038/nmat3420 Author: Alison Stoddart
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  • 67
    Publication Date: 2012-08-24
    Description: Multiferroicity in an organic charge-transfer salt that is suggestive of electric-dipole-driven magnetism Nature Materials 11, 755 (2012). doi:10.1038/nmat3400 Authors: Peter Lunkenheimer, Jens Müller, Stephan Krohns, Florian Schrettle, Alois Loidl, Benedikt Hartmann, Robert Rommel, Mariano de Souza, Chisa Hotta, John A. Schlueter & Michael Lang Multiferroics, showing simultaneous ordering of electrical and magnetic degrees of freedom, are remarkable materials as seen from both the academic and technological points of view. A prominent mechanism of multiferroicity is the spin-driven ferroelectricity, often found in frustrated antiferromagnets with helical spin order. There, as for conventional ferroelectrics, the electrical dipoles arise from an off-centre displacement of ions. However, recently a different mechanism, namely purely electronic ferroelectricity, where charge order breaks inversion symmetry, has attracted considerable interest. Here we provide evidence for ferroelectricity, accompanied by antiferromagnetic spin order, in a two-dimensional organic charge-transfer salt, thus representing a new class of multiferroics. We propose a charge-order-driven mechanism leading to electronic ferroelectricity in this material. Quite unexpectedly for electronic ferroelectrics, dipolar and spin order arise nearly simultaneously. This can be ascribed to the loss of spin frustration induced by the ferroelectric ordering. Hence, here the spin order is driven by the ferroelectricity, in marked contrast to the spin-driven ferroelectricity in helical magnets.
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  • 68
    Publication Date: 2012-08-24
    Description: Cross-sectional imaging of individual layers and buried interfaces of graphene-based heterostructures and superlattices Nature Materials 11, 764 (2012). doi:10.1038/nmat3386 Authors: S. J. Haigh, A. Gholinia, R. Jalil, S. Romani, L. Britnell, D. C. Elias, K. S. Novoselov, L. A. Ponomarenko, A. K. Geim & R. Gorbachev By stacking various two-dimensional (2D) atomic crystals on top of each other, it is possible to create multilayer heterostructures and devices with designed electronic properties. However, various adsorbates become trapped between layers during their assembly, and this not only affects the resulting quality but also prevents the formation of a true artificial layered crystal upheld by van der Waals interaction, creating instead a laminate glued together by contamination. Transmission electron microscopy (TEM) has shown that graphene and boron nitride monolayers, the two best characterized 2D crystals, are densely covered with hydrocarbons (even after thermal annealing in high vacuum) and exhibit only small clean patches suitable for atomic resolution imaging. This observation seems detrimental for any realistic prospect of creating van der Waals materials and heterostructures with atomically sharp interfaces. Here we employ cross sectional TEM to take a side view of several graphene–boron nitride heterostructures. We find that the trapped hydrocarbons segregate into isolated pockets, leaving the interfaces atomically clean. Moreover, we observe a clear correlation between interface roughness and the electronic quality of encapsulated graphene. This work proves the concept of heterostructures assembled with atomic layer precision and provides their first TEM images.
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  • 69
    Publication Date: 2012-08-24
    Description: Rapid casting of patterned vascular networks for perfusable engineered three-dimensional tissues Nature Materials 11, 768 (2012). doi:10.1038/nmat3357 Authors: Jordan S. Miller, Kelly R. Stevens, Michael T. Yang, Brendon M. Baker, Duc-Huy T. Nguyen, Daniel M. Cohen, Esteban Toro, Alice A. Chen, Peter A. Galie, Xiang Yu, Ritika Chaturvedi, Sangeeta N. Bhatia & Christopher S. Chen In the absence of perfusable vascular networks, three-dimensional (3D) engineered tissues densely populated with cells quickly develop a necrotic core. Yet the lack of a general approach to rapidly construct such networks remains a major challenge for 3D tissue culture. Here, we printed rigid 3D filament networks of carbohydrate glass, and used them as a cytocompatible sacrificial template in engineered tissues containing living cells to generate cylindrical networks that could be lined with endothelial cells and perfused with blood under high-pressure pulsatile flow. Because this simple vascular casting approach allows independent control of network geometry, endothelialization and extravascular tissue, it is compatible with a wide variety of cell types, synthetic and natural extracellular matrices, and crosslinking strategies. We also demonstrated that the perfused vascular channels sustained the metabolic function of primary rat hepatocytes in engineered tissue constructs that otherwise exhibited suppressed function in their core.
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  • 70
    Publication Date: 2012-08-24
    Description: A Janus cobalt-based catalytic material for electro-splitting of water Nature Materials 11, 802 (2012). doi:10.1038/nmat3385 Authors: Saioa Cobo, Jonathan Heidkamp, Pierre-André Jacques, Jennifer Fize, Vincent Fourmond, Laure Guetaz, Bruno Jousselme, Valentina Ivanova, Holger Dau, Serge Palacin, Marc Fontecave & Vincent Artero
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  • 71
    Publication Date: 2012-08-24
    Description: The nature of strength enhancement and weakening by pentagon–heptagon defects in graphene Nature Materials 11, 759 (2012). doi:10.1038/nmat3370 Authors: Yujie Wei, Jiangtao Wu, Hanqing Yin, Xinghua Shi, Ronggui Yang & Mildred Dresselhaus The two-dimensional crystalline structures in graphene challenge the applicability of existing theories that have been used for characterizing its three-dimensional counterparts. It is crucial to establish reliable structure–property relationships in the important two-dimensional crystals to fully use their remarkable properties. With the success in synthesizing large-area polycrystalline graphene, understanding how grain boundaries (GBs) in graphene alter its physical properties is of both scientific and technological importance. A recent work showed that more GB defects could counter intuitively give rise to higher strength in tilt GBs (ref. ). We show here that GB strength can either increase or decrease with the tilt, and the behaviour can be explained well by continuum mechanics. It is not just the density of defects that affects the mechanical properties, but the detailed arrangements of defects are also important. The strengths of tilt GBs increase as the square of the tilt angles if pentagon–heptagon defects are evenly spaced, and the trend breaks down in other cases. We find that mechanical failure always starts from the bond shared by hexagon–heptagon rings. Our present work provides fundamental guidance towards understanding how defects interact in two-dimensional crystals, which is important for using high-strength and stretchable graphene for biological and electronic applications.
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  • 72
    Publication Date: 2012-08-24
    Description: Deep-subwavelength imaging of the modal dispersion of light Nature Materials 11, 781 (2012). doi:10.1038/nmat3402 Authors: R. Sapienza, T. Coenen, J. Renger, M. Kuttge, N. F. van Hulst & A. Polman
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  • 73
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    Publication Date: 2012-08-24
    Description: Polymer chemistry: Still in control Nature Materials 11, 753 (2012). doi:10.1038/nmat3413 Author: Jeffrey Pyun The development of synthetic strategies enabling the fabrication of well-defined polymer–biomolecule conjugates, together with advances in top-down nanofabrication, are two highlights from a recent meeting of polymer scientists.
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  • 74
    Publication Date: 2012-08-24
    Description: Single-crystal organic charge-transfer interfaces probed using Schottky-gated heterostructures Nature Materials 11, 788 (2012). doi:10.1038/nmat3383 Authors: Ignacio Gutiérrez Lezama, Masaki Nakano, Nikolas A. Minder, Zhihua Chen, Flavia V. Di Girolamo, Antonio Facchetti & Alberto F. Morpurgo
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  • 75
    Publication Date: 2012-08-24
    Description: Atomic origins of the high catalytic activity of nanoporous gold Nature Materials 11, 775 (2012). doi:10.1038/nmat3391 Authors: Takeshi Fujita, Pengfei Guan, Keith McKenna, Xingyou Lang, Akihiko Hirata, Ling Zhang, Tomoharu Tokunaga, Shigeo Arai, Yuta Yamamoto, Nobuo Tanaka, Yoshifumi Ishikawa, Naoki Asao, Yoshinori Yamamoto, Jonah Erlebacher & Mingwei Chen
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  • 76
    Publication Date: 2012-08-24
    Description: Tuning the autophagy-inducing activity of lanthanide-based nanocrystals through specific surface-coating peptides Nature Materials 11, 817 (2012). doi:10.1038/nmat3363 Authors: Yunjiao Zhang, Fang Zheng, Tianlong Yang, Wei Zhou, Yun Liu, Na Man, Li Zhang, Nan Jin, Qingqing Dou, Yong Zhang, Zhengquan Li & Long-Ping Wen
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  • 77
    Publication Date: 2012-08-24
    Description: Label-free identification of single dielectric nanoparticles and viruses with ultraweak polarization forces Nature Materials 11, 808 (2012). doi:10.1038/nmat3369 Authors: Laura Fumagalli, Daniel Esteban-Ferrer, Ana Cuervo, Jose L. Carrascosa & Gabriel Gomila
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  • 78
    Publication Date: 2012-08-24
    Description: A flexible and highly sensitive strain-gauge sensor using reversible interlocking of nanofibres Nature Materials 11, 795 (2012). doi:10.1038/nmat3380 Authors: Changhyun Pang, Gil-Yong Lee, Tae-il Kim, Sang Moon Kim, Hong Nam Kim, Sung-Hoon Ahn & Kahp-Yang Suh
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  • 79
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    Publication Date: 2012-07-25
    Description: Dense and strong Nature Materials 11, 661 (2012). doi:10.1038/nmat3398 Author: Christian Martin
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  • 80
    Publication Date: 2012-07-25
    Description: Long-range transfer of electron–phonon coupling in oxide superlattices Nature Materials 11, 675 (2012). doi:10.1038/nmat3378 Authors: N. Driza, S. Blanco-Canosa, M. Bakr, S. Soltan, M. Khalid, L. Mustafa, K. Kawashima, G. Christiani, H-U. Habermeier, G. Khaliullin, C. Ulrich, M. Le Tacon & B. Keimer The electron–phonon interaction is of central importance for the electrical and thermal properties of solids, and its influence on superconductivity, colossal magnetoresistance and other many-body phenomena in correlated-electron materials is the subject of intense research at present. However, the non-local nature of the interactions between valence electrons and lattice ions, often compounded by a plethora of vibrational modes, presents formidable challenges for attempts to experimentally control and theoretically describe the physical properties of complex materials. Here we report a Raman scattering study of the lattice dynamics in superlattices of the high-temperature superconductor YBa2Cu3O7 (YBCO) and the colossal-magnetoresistance compound La2/3Ca1/3MnO3 that suggests a new approach to this problem. We find that a rotational mode of the MnO6 octahedra in La2/3Ca1/3MnO3 experiences pronounced superconductivity-induced line-shape anomalies, which scale linearly with the thickness of the YBCO layers over a remarkably long range of several tens of nanometres. The transfer of the electron–phonon coupling between superlattice layers can be understood as a consequence of long-range Coulomb forces in conjunction with an orbital reconstruction at the interface. The superlattice geometry thus provides new opportunities for controlled modification of the electron–phonon interaction in complex materials.
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  • 81
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    Publication Date: 2012-07-25
    Description: A marine makeover Nature Materials 11, 661 (2012). doi:10.1038/nmat3395 Author: Alison Stoddart
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  • 82
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    Publication Date: 2012-07-25
    Description: A flare for cancer Nature Materials 11, 661 (2012). doi:10.1038/nmat3394 Author: Alison Stoddart
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  • 83
    Publication Date: 2012-07-25
    Description: Al13Fe4 as a low-cost alternative for palladium in heterogeneous hydrogenation Nature Materials 11, 690 (2012). doi:10.1038/nmat3347 Authors: M. Armbrüster, K. Kovnir, M. Friedrich, D. Teschner, G. Wowsnick, M. Hahne, P. Gille, L. Szentmiklósi, M. Feuerbacher, M. Heggen, F. Girgsdies, D. Rosenthal, R. Schlögl & Yu. Grin Replacing noble metals in heterogeneous catalysts by low-cost substitutes has driven scientific and industrial research for more than 100 years. Cheap and ubiquitous iron is especially desirable, because it does not bear potential health risks like, for example, nickel. To purify the ethylene feed for the production of polyethylene, the semi-hydrogenation of acetylene is applied (80 × 106 tons per annum; refs , , ). The presence of small and separated transition-metal atom ensembles (so-called site-isolation), and the suppression of hydride formation are beneficial for the catalytic performance. Iron catalysts necessitate at least 50 bar and 100 °C for the hydrogenation of unsaturated C–C bonds, showing only limited selectivity towards semi-hydrogenation. Recent innovation in catalytic semi-hydrogenation is based on computational screening of substitutional alloys to identify promising metal combinations using scaling functions and the experimental realization of the site-isolation concept employing structurally well-ordered and in situ stable intermetallic compounds of Ga with Pd (refs , , , , ). The stability enables a knowledge-based development by assigning the observed catalytic properties to the crystal and electronic structures of the intermetallic compounds. Following this approach, we identified the low-cost and environmentally benign intermetallic compound Al13Fe4 as an active and selective semi-hydrogenation catalyst. This knowledge-based development might prove applicable to a wide range of heterogeneously catalysed reactions.
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  • 84
    Publication Date: 2012-07-25
    Description: Mesoscopic architectures of porous coordination polymers fabricated by pseudomorphic replication Nature Materials 11, 717 (2012). doi:10.1038/nmat3359 Authors: Julien Reboul, Shuhei Furukawa, Nao Horike, Manuel Tsotsalas, Kenji Hirai, Hiromitsu Uehara, Mio Kondo, Nicolas Louvain, Osami Sakata & Susumu Kitagawa
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  • 85
    Publication Date: 2012-07-25
    Description: Ferroelectric order in individual nanometre-scale crystals Nature Materials 11, 700 (2012). doi:10.1038/nmat3371 Authors: Mark J. Polking, Myung-Geun Han, Amin Yourdkhani, Valeri Petkov, Christian F. Kisielowski, Vyacheslav V. Volkov, Yimei Zhu, Gabriel Caruntu, A. Paul Alivisatos & Ramamoorthy Ramesh
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  • 86
    Publication Date: 2012-07-25
    Description: Cell culture: Soft gels select tumorigenic cells Nature Materials 11, 662 (2012). doi:10.1038/nmat3388 Authors: Jae-Won Shin & Dennis E. Discher Pliable gels of fibrin, a fibrous protein involved in blood clotting and linked to cancer, select cells with high in vivo aggressiveness and 'stemness' from a pool of cancer cells.
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  • 87
    Publication Date: 2012-07-25
    Description: The predominant role of collagen in the nucleation, growth, structure and orientation of bone apatite Nature Materials 11, 724 (2012). doi:10.1038/nmat3362 Authors: Yan Wang, Thierry Azaïs, Marc Robin, Anne Vallée, Chelsea Catania, Patrick Legriel, Gérard Pehau-Arnaudet, Florence Babonneau, Marie-Madeleine Giraud-Guille & Nadine Nassif
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  • 88
    Publication Date: 2012-07-25
    Description: A molecular perspective of water at metal interfaces Nature Materials 11, 667 (2012). doi:10.1038/nmat3354 Authors: Javier Carrasco, Andrew Hodgson & Angelos Michaelides When water binds to solid surfaces it forms a large variety of structures, which leads to behaviour relevant to many technological processes and phenomena such as lubrication, heterogeneous catalysis and electrochemistry. This Review discusses current understanding of the interface between water and flat metal surfaces at the atomic and molecular levels, as well as open questions in this field.
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  • 89
    Publication Date: 2012-07-25
    Description: Solitonic lattice and Yukawa forces in the rare-earth orthoferrite TbFeO3 Nature Materials 11, 694 (2012). doi:10.1038/nmat3358 Authors: Sergey Artyukhin, Maxim Mostovoy, Niels Paduraru Jensen, Duc Le, Karel Prokes, Vinícius G. de Paula, Heloisa N. Bordallo, Andrey Maljuk, Sven Landsgesell, Hanjo Ryll, Bastian Klemke, Sebastian Paeckel, Klaus Kiefer, Kim Lefmann, Luise Theil Kuhn & Dimitri N. Argyriou
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  • 90
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    Publication Date: 2012-07-25
    Description: Stretching the boundaries Nature Materials 11, 659 (2012). doi:10.1038/nmat3379 Tom Waller of swimwear manufacturer Speedo's global research and development facility, Aqualab, talked to Nature Materials about the competitive sporting goods industry and the technology behind their new racing system that will be put to the test at the 2012 Olympic Games in London.
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  • 91
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    Publication Date: 2012-07-25
    Description: More than training Nature Materials 11, 651 (2012). doi:10.1038/nmat3399 Highly engineered materials can play a pivotal role both in boosting the performance of athletes and in stimulating the innate repair of tissue damaged by sports injuries.
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  • 92
    Publication Date: 2012-07-25
    Description: Materials and technology in sport Nature Materials 11, 655 (2012). doi:10.1038/nmat3382 Authors: Mike Caine, Kim Blair & Mike Vasquez An evolution from natural to highly engineered materials has drastically changed the way in which athletes train and compete. Thanks to challenging technological problems and unconventional commercialization pathways, universities can make a direct impact on the development of sporting goods.
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  • 93
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    Publication Date: 2012-07-25
    Description: SNAREd bilayers Nature Materials 11, 661 (2012). doi:10.1038/nmat3397 Author: Pep Pàmies
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  • 94
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    Publication Date: 2012-07-25
    Description: Shaken lasers Nature Materials 11, 661 (2012). doi:10.1038/nmat3396 Author: Joerg Heber
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  • 95
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    Publication Date: 2012-07-25
    Description: Hydrogels: The catalytic curtsey Nature Materials 11, 665 (2012). doi:10.1038/nmat3381 Author: Eugenia Kumacheva A polymer hydrogel system combines chemical, thermal and mechanical responses in a reversible manner and thus exhibits homeostatic and self-regulatory behaviour similar to that of living systems.
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  • 96
    Publication Date: 2012-07-25
    Description: Organic electronics: Organic thin-film magnetometers Nature Materials 11, 663 (2012). doi:10.1038/nmat3390 Author: Joseph Shinar Magnetometry usually requires large probes and bulky instrumentation. Organic diodes have now been used in small probes that can measure moderate magnetic fields with 10 ppm precision.
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  • 97
    Publication Date: 2012-07-25
    Description: High intergrain critical current density in fine-grain (Ba0.6K0.4)Fe2As2 wires and bulks Nature Materials 11, 682 (2012). doi:10.1038/nmat3333 Authors: J. D. Weiss, C. Tarantini, J. Jiang, F. Kametani, A. A. Polyanskii, D. C. Larbalestier & E. E. Hellstrom The K- and Co-doped BaFe2As2 (Ba-122) superconducting compounds are potentially useful for applications because they have upper critical fields (Hc2) of well over 50 T, Hc2 anisotropy γ 〈 2and thin-film critical current densities Jc exceeding 1 MA cm−2 (refs , , , ) at 4.2 K. However, thin-film bicrystals of Co-doped Ba-122 clearly exhibit weak link behaviour for [001] tilt misorientations of more than about 5°, suggesting that textured substrates would be needed for applications, as in the cuprates. Here we present a contrary and very much more positive result in which untextured polycrystalline (Ba0.6K0.4)Fe2As2 bulks and round wires with high grain boundary density have transport critical current densities well over 0.1 MA cm−2 (self-field, 4.2 K), more than 10 times higher than that of any other round untextured ferropnictide wire and 4–5 times higher than the best textured flat wire. The enhanced grain connectivity is ascribed to their much improved phase purity and to the enhanced vortex stiffness of this low-anisotropy compound (γ~1–2) when compared with YBa2Cu3O7−x (γ~5).
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  • 98
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    Publication Date: 2012-07-25
    Description: Material witness: Two ways to relax Nature Materials 11, 666 (2012). doi:10.1038/nmat3389 Author: Philip Ball
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  • 99
    Publication Date: 2012-07-25
    Description: Spin-current-driven thermoelectric coating Nature Materials 11, 686 (2012). doi:10.1038/nmat3360 Authors: Akihiro Kirihara, Ken-ichi Uchida, Yosuke Kajiwara, Masahiko Ishida, Yasunobu Nakamura, Takashi Manako, Eiji Saitoh & Shinichi Yorozu Energy harvesting technologies, which generate electricity from environmental energy, have been attracting great interest because of their potential to power ubiquitously deployed sensor networks and mobile electronics. Of these technologies, thermoelectric (TE) conversion is a particularly promising candidate, because it can directly generate electricity from the thermal energy that is available in various places. Here we show a novel TE concept based on the spin Seebeck effect, called ‘spin-thermoelectric (STE) coating’, which is characterized by a simple film structure, convenient scaling capability, and easy fabrication. The STE coating, with a 60-nm-thick bismuth-substituted yttrium iron garnet (Bi:YIG) film, is applied by means of a highly efficient process on a non-magnetic substrate. Notably, spin-current-driven TE conversion is successfully demonstrated under a temperature gradient perpendicular to such an ultrathin STE-coating layer (amounting to only 0.01% of the total sample thickness). We also show that the STE coating is applicable even on glass surfaces with amorphous structures. Such a versatile implementation of the TE function may pave the way for novel applications making full use of omnipresent heat.
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  • 100
    Publication Date: 2012-07-25
    Description: Extracellular-matrix tethering regulates stem-cell fate Nature Materials 11, 742 (2012). doi:10.1038/nmat3387 Author: Britta Trappmann, Julien E. Gautrot, John T. Connelly, Daniel G. T. Strange, Yuan Li, Michelle L. Oyen, Martien A. Cohen Stuart, Heike Boehm, Bojun Li, Viola Vogel, Joachim P. Spatz, Fiona M. Watt & Wilhelm T. S. Huck
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