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  4. High-pressure optical floating-zone growth of Li2FeSiO4 single crystals
 
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2019
Journal Article
Title

High-pressure optical floating-zone growth of Li2FeSiO4 single crystals

Abstract
We report the growth of mm-sized Pmnb-Li2FeSiO4 single crystals by means of the optical floating-zone method at high argon pressure and describe the conditions required for a stable growth process. The crystal structure is determined and refined by single-crystal X-ray diffraction. The lattice constants amount to a = 6.27837(3) Å, b = 10.62901(6) Å and c = 5.03099(3) Å at 100 K. In addition, we present high-resolution neutron powder diffraction data that suggest that the slight Li - Fe site exchange seems to be intrinsic to this material. High quality of the crystal is confirmed by very sharp anomalies in the static magnetic susceptibility and in the specific heat associated with the onset of long-range antiferromagnetic order at TN = 17.0(5) K and pronounced magnetic anisotropy for the three crystallographic axes. Furthermore, magnetic susceptibility excludes the presence of sizable amounts of magnetic impurity phases.
Author(s)
Hergett, Waldemar
Univ., Heidelberg, Kirchhoff Inst. of Physics
Neef, Christoph  orcid-logo
Fraunhofer-Institut für System- und Innovationsforschung ISI  
Wadepohl, Hubert
Univ., Heidelberg, Inst. of Inorganic Chemistry
Meyer, Hans-Peter
Univ., Heidelberg, Inst. of Earth Science
Abdel-Hafiez, Mahmoud M.
Univ., Heidelberg, Kirchhoff Inst. of Physics; Fayoum Univ., Physics Department
Ritter, Clemens
Institut Laue‐Langevin, Grenoble
Thauer, Elisa
Univ., Heidelberg, Kirchhoff Inst. of Physics
Klingeler, Rüdiger
Univ., Heidelberg, Kirchhoff Inst. of Physics; Univ., Heidelberg, Center for Advanced Materials
Journal
Journal of Crystal Growth  
Funder
Deutsche Forschungsgemeinschaft DFG  
DOI
10.1016/j.jcrysgro.2019.03.010
Language
English
Fraunhofer-Institut für System- und Innovationsforschung ISI  
Keyword(s)
  • characterization

  • crystal structure

  • single crystal growth

  • floating zone technique

  • lithium‐ion battery material

  • magnetic material

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