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  • QD1-999
  • KIT Scientific Publishing  (46)
  • Frontiers Media SA  (13)
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  • 1
    Publication Date: 2024-04-05
    Description: After a quarter of century of rapid technological advances, research has revealed the complexity of cancer, a disease intimately related to the dynamic transformation of the genome. However, the full understanding of the molecular onset of this disease is still far from achieved and the search for mechanisms of treatment will follow closely. It is here that Nanotechnology enters the fray offering a wealth of tools to diagnose and treat cancer. In fact, the National Cancer Institute predicts that over the next years, nanotechnology will result in important advances in early detection, molecular imaging, targeted and multifunctional therapeutics, prevention and control of cancer. Nanotechnology offers numerous tools to diagnose and treat cancer, such as new imaging agents, multifunctional devices capable of overcome biological barriers to deliver therapeutic agents directly to cells and tissues involved in cancer growth and metastasis, and devices capable of predicting molecular changes to prevent action against precancerous cells. Nanomaterials-based delivery systems in Theranostics (Diagnostics & Therapy) provide better penetration of therapeutic and diagnostic substances within the body at a reduced risk in comparison to conventional therapies. At the present time, there is a growing need to enhance the capability of theranostics procedures where nanomaterials-based sensors may provide for the simultaneous detection of several gene-associated conditions and nanodevices with the ability to monitor real-time drug action. These innovative multifunctional nanocarriers for cancer theranostics may allow the development of diagnostics systems such as colorimetric and immunoassays, and in therapy approaches through gene therapy, drug delivery and tumor targeting systems in cancer. Some of the thousands and thousands of published nanosystems so far will most likely revolutionize our understanding of biological mechanisms and push forward the clinical practice through their integration in future diagnostics platforms. Nevertheless, despite the significant efforts towards the use of nanomaterials in biologically relevant research, more in vivo studies are needed to assess the applicability of these materials as delivery agents. In fact, only a few went through feasible clinical trials. Nanomaterials have to serve as the norm rather than an exception in the future conventional cancer treatments. Future in vivo work will need to carefully consider the correct choice of chemical modifications to incorporate into the multifunctional nanocarriers to avoid activation off-target, side effects and toxicity. Moreover the majority of studies on nanomaterials do not consider the final application to guide the design of nanomaterial. Instead, the focus is predominantly on engineering materials with specific physical or chemical properties. It is imperative to learn how advances in nanosystem’s capabilities are being used to identify new diagnostic and therapy tools driving the development of personalized medicine in oncology; discover how integrating cancer research and nanotechnology modeling can help patient diagnosis and treatment; recognize how to translate nanotheranostics data into an actionable clinical strategy; discuss with industry leaders how nanotheranostics is evolving and what the impact is on current research efforts; and last but not least, learn what approaches are proving fruitful in turning promising clinical data into treatment realities.
    Keywords: QD1-999 ; Q1-390 ; Nanoparticles ; Gene Therapy ; Immunotherapy ; bioimaging ; theranostics ; nanomaterials ; Drug delivery ; Nanomedicine ; Cancer ; Phototherapy ; thema EDItEUR::P Mathematics and Science::PN Chemistry
    Language: English
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  • 2
    Publication Date: 2024-04-05
    Description: Ein wesentlicher Aspekt dieser Arbeit ist die Suche nach besseren Donorkomponenten für die, mit Hilfe der Kokondensationstechnik dargestellten, Germaniummonohalogenidlösungen.Des Weiteren befaßt sich die Arbeit mit der Folgechemie von metalloiden Germaniumclustern sowohl in Lösung, als auch in der Gasphase.
    Keywords: QD1-999 ; metalloid ; Kokondensation ; Cluster ; Germanium ; Folgechemie ; thema EDItEUR::P Mathematics and Science::PN Chemistry
    Language: German
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  • 3
    Publication Date: 2024-04-05
    Description: In the past 20 years protein engineering has been used for the production of proteins mostly for biological applications. The incorporation of artificial amino acids and chemical handles into proteins had made possible the design and production of protein-based materials like hybrid inorganic-organic materials, smart/ responsive materials, monodisperse polymers, and nanoscale assemblies. In the current topic, we cover current uses and envision future applications of materials generated using protein engineering and biosynthesis techniques.
    Keywords: QD1-999 ; Q1-390 ; bacterial collagen ; biomass degradation ; Biocatalysis ; Hydrogels ; human cholinesterase ; thema EDItEUR::P Mathematics and Science::PN Chemistry
    Language: English
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  • 4
    Publication Date: 2024-04-05
    Description: In der vorliegenden Arbeit wird die Anregungs/Abfrage-Photoelektronenspektroskopie auf die Untersuchung elektronischer Dynamik in massenselektierten Molekülionen unter Hochvakuum-Bedingungen angewendet, wodurch die Beobachtung intramolekularer elektronischer Relaxation unter Ausschluss jeglicher Wechselwirkung der untersuchten Teilchen zur umgebenden Matrix möglich ist.
    Keywords: QD1-999 ; Dianion ; Dynamik ; Gasphase ; Zeitauflösung ; Photoelektronenspektroskopie ; Phthalocyanin ; Fulleren ; Ab-initio-Rechnung ; thema EDItEUR::P Mathematics and Science::PN Chemistry
    Language: German
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  • 5
    Publication Date: 2024-04-05
    Description: In einer rußenden pulsierten Methan-Luft Diffusionsflamme werden Rußkonzentration, Partikelzahldichte, -radius, -temperatur und OH*-Emission bestimmt. Die pulsierte Flamme zeigt transiente Effekte, erhöhte mittlere Rußkonzentrationen und Ablösung der Flammenspitze. Ein analytisches Modell beschreibt Flammenkontur, Ablösung der Flammenspitze und den asymmetrischen Verlauf der OH*-Emission. Eine numerische Analyse auf Basis der Flamelettheorie gibt die nichtlinearen Effekte der Rußbildung wieder.
    Keywords: QD1-999 ; Verbrennung ; Laminare Strömung ; Methan ; Luft ; Ruß ; Pulsation ; thema EDItEUR::P Mathematics and Science::PN Chemistry
    Language: German
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  • 6
    Publication Date: 2024-04-05
    Description: In dieser Arbeit wurden Geschwindigkeitskonstanten für den thermischen Zerfall von NCN und Allylamin unter verbrennungsrelevanten Bedingungen untersucht. Zerfallsreaktionen stickstoffhaltiger Verbindungen spielen zum Beispiel bei der Stickoxidbildung in Verbrennungsprozessen eine Rolle. Die Experimente wurden an einem Stoßrohr durchgeführt, an das ein ARAS-Aufbau oder ein FM-Spektrometer gekoppelt wurde. Die erhaltenen Ergebnisse wurden mit Hilfe der statistischen Reaktionstheorie analysiert.
    Keywords: QD1-999 ; Reaktionskinetik ; Atomresonanzabsorptionsspektroskopie ; Mastergleichung ; Stoßwellenuntersuchung ; Frequenzmodulationsspektroskopie ; thema EDItEUR::P Mathematics and Science::PN Chemistry
    Language: German
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  • 7
    Publication Date: 2024-04-05
    Description: Diese Arbeit befasst sich mit der Wasserdampfreformierung von Methan, Ethan, Propan, Butan und Alkanmischungen an einem mit Rhodium beladenen Wabenkatalysator, der Entwicklung eines mehrstufigen Reaktionsmechanismus dazu und dessen Validierung unter Verwendung numerischer Modelle. Simulationen mit dem Mechanismus erlauben, Einblicke in das molekulare Geschehen im Reaktor zu nehmen und Vorhersagen für ähnliche Reaktionssysteme abzugeben. Auch die Katalysatordeaktivierung wird untersucht.
    Keywords: QD1-999 ; Erdgas ; Wasserdampfreformierung ; numerische Simulation ; Rhodiumkatalysator ; Reaktionsmechanismus ; thema EDItEUR::P Mathematics and Science::PN Chemistry
    Language: German
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  • 8
    Publication Date: 2024-04-05
    Description: Since its inception, the Deep Carbon Observatory (DCO) has coalesced a multidisciplinary and international group of researchers focused on understanding and quantifying Earth’s deep carbon budget. Carbon is the fourth most abundant element in the universe, and understanding carbon chemistry under a variety of environmental conditions impacts all aspects of planetary sciences, including planet formation, the form and function of planetary interiors, and the origin and diversity of life. DCO recognizes that is integrating and promoting the contributions of early career scientists are integral to the advancement of knowledge regarding the quantities, movements, origins, and forms of Earth’s deep carbon through field, experimental, analytical, and computational research. Early career scientists represent the future of deep carbon science and contribute substantially to ongoing research by implementing innovative ideas, challenging traditional working schemes, and bringing a globally interconnected perspective to the scientific community. This research topic highlights the contributions at the forefront of deep carbon research by DCO Early Career Scientist community. The manuscripts of this Frontiers e-volume bear evidence of the rapid advances in deep carbon science, and highlights the importance of approaching this field from a plethora of different angles integrating disciplines as diverse as mineralogy, geochemistry and microbiology. This integration is fundamental in understanding the movements and transformations of carbon across its deep cycle.
    Keywords: QD1-999 ; GE1-350 ; GB3-5030 ; QR1-502 ; Q1-390 ; geomicrobiology ; geochemistry ; deep carbon ; carbon minerals ; high temperature high pressure ; volcanism ; thema EDItEUR::P Mathematics and Science::PN Chemistry
    Language: English
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  • 9
    Publication Date: 2024-04-05
    Description: A substantial increase in the number of studies using the optical properties (absorbance and fluorescence) of dissolved organic matter (DOM) as a proxy for its chemical properties in estuaries and the coastal and open ocean has occurred during the last decade. We are making progress on finding the actual chemical compounds or phenomena responsible for DOM’s optical properties. Ultrahigh resolution mass spectrometry, in particular, has made important progress in making the key connections between optics and chemistry. But serious questions remain and the last major special issue on DOM optics and chemistry occurred nearly 10 years ago. Controversies remain from the non-specific optical properties of DOM that are not linked to discrete sources, and sometimes provide conflicting information. The use of optics, which is relatively easier to employ in synoptic and high resolution sampling to determine chemistry, is a critical connection to make and can lead to major advances in our understanding of organic matter cycling in all aquatic ecosystems. The contentions and controversies raised by our poor understanding of the linkages between optics and chemistry of DOM are bottlenecks that need to be addressed and overcome.
    Keywords: QD1-999 ; GB3-5030 ; GC1-1581 ; Q1-390 ; CDOM ; dissolved organic matter ; Absorbance ; fluorescence ; biomarkers ; Stable isotopes ; Mass Spectrometry ; dissolved organic carbon ; thema EDItEUR::P Mathematics and Science::PN Chemistry
    Language: English
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  • 10
    Publication Date: 2024-04-05
    Description: In this thesis the implementation of the explicitly correlated coupled-cluster singles-and-doubles model is presented. This tool is capable of efficiently calculating CCSD energies at the basis set limit with relatively small orbital basis sets. The implementation supports RHF, UHF and ROHF reference wave functions. The usefulness of the developed tool is illustrated with selected chemical applications.
    Keywords: QD1-999 ; coupled-cluster theory ; explicit correlation ; transition-state theory ; CCSD ; thema EDItEUR::P Mathematics and Science::PN Chemistry
    Language: English
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