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Visualizing charge densities and electrostatic potentials in materials by synchrotron X-ray powder diffraction
by
Tanaka, Hiroshi
, Kato, Kenichi
in
Cameras
/ Charge density
/ Coordination compounds
/ Manganese
/ Material properties
/ Materials science
/ Maximum entropy method
/ Physics
/ Synchrotron radiation
/ Transition metals
/ X ray powder diffraction
/ X-rays
2016
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Visualizing charge densities and electrostatic potentials in materials by synchrotron X-ray powder diffraction
by
Tanaka, Hiroshi
, Kato, Kenichi
in
Cameras
/ Charge density
/ Coordination compounds
/ Manganese
/ Material properties
/ Materials science
/ Maximum entropy method
/ Physics
/ Synchrotron radiation
/ Transition metals
/ X ray powder diffraction
/ X-rays
2016
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Do you wish to request the book?
Visualizing charge densities and electrostatic potentials in materials by synchrotron X-ray powder diffraction
by
Tanaka, Hiroshi
, Kato, Kenichi
in
Cameras
/ Charge density
/ Coordination compounds
/ Manganese
/ Material properties
/ Materials science
/ Maximum entropy method
/ Physics
/ Synchrotron radiation
/ Transition metals
/ X ray powder diffraction
/ X-rays
2016
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Visualizing charge densities and electrostatic potentials in materials by synchrotron X-ray powder diffraction
Journal Article
Visualizing charge densities and electrostatic potentials in materials by synchrotron X-ray powder diffraction
2016
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Overview
The utilization of synchrotron X-ray powder diffraction (SXPD) has allowed us to better understand materials properties on the basis of charge densities and electrostatic potentials as well as atomic configurations in crystals. This article describes capability of SXPD in visualizing materials properties by a revisit to charge density studies and electrostatic potential imaging in manganese oxides, spin crossover complexes, transition metal cyanides, etc. Results obtained in our studies clearly warrant further research on visualization of electrostatic properties taking into account nanostructure analysis by total scattering.
Publisher
Taylor & Francis Ltd
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