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  • biological membraneslipidsbilayerslipid–protein assemblieshigh-pressure studies  (1)
  • high pressuremultiferroicsmaterials science  (1)
  • International Union of Crystallography (IUCr)  (2)
  • Cell Press
  • Periodicals Archive Online (PAO)
  • 2010-2014  (2)
  • 2005-2009
  • 1980-1984
  • 1955-1959
  • 1925-1929
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  • International Union of Crystallography (IUCr)  (2)
  • Cell Press
  • Periodicals Archive Online (PAO)
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  • 2010-2014  (2)
  • 2005-2009
  • 1980-1984
  • 1955-1959
  • 1925-1929
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  • 1
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    Unknown
    International Union of Crystallography (IUCr)
    In: IUCrJ
    Publication Date: 2014-11-12
    Description: Membranes are amongst the most important biological structures; they maintain the fundamental integrity of cells, compartmentalize regions within them and play an active role in a wide range of cellular processes. Pressure can play a key role in probing the structure and dynamics of membrane assemblies, and is also critical to the biology and adaptation of deep-sea organisms. This article presents an overview of the effect of pressure on the mesostructure of lipid membranes, bilayer organization and lipid–protein assemblies. It also summarizes recent developments in high-pressure structural instrumentation suitable for experiments on membranes.
    Keywords: biological membraneslipidsbilayerslipid–protein assemblieshigh-pressure studies
    Electronic ISSN: 2052-2525
    Topics: Geosciences , Physics
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  • 2
    facet.materialart.
    Unknown
    International Union of Crystallography (IUCr)
    In: IUCrJ
    Publication Date: 2014-11-12
    Description: The community of material scientists is strongly committed to the research area of multiferroic materials, both for the understanding of the complex mechanisms supporting the multiferroism and for the fabrication of new compounds, potentially suitable for technological applications. The use of high pressure is a powerful tool in synthesizing new multiferroic, in particular magneto-electric phases, where the pressure stabilization of otherwise unstable perovskite-based structural distortions may lead to promising novel metastable compounds. The in situ investigation of the high-pressure behavior of multiferroic materials has provided insight into the complex interplay between magnetic and electronic properties and the coupling to structural instabilities.
    Keywords: high pressuremultiferroicsmaterials science
    Electronic ISSN: 2052-2525
    Topics: Geosciences , Physics
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