Liquid‐Like Ionic Conduction in Solid Lithium and Sodium Monocarba‐<i>closo</i>‐Decaborates Near or at Room Temperature

DOI DOI Web Site Web Site Web Site ほか4件をすべて表示 一部だけ表示 被引用文献34件 参考文献22件
  • Wan Si Tang
    Department of Materials Science and Engineering University of Maryland College Park MD 20742‐2115 USA
  • Motoaki Matsuo
    Institute for Materials Research Tohoku University Sendai 980‐8577 Japan
  • Hui Wu
    NIST Center for Neutron Research National Institute of Standards and Technology Gaithersburg MD 20899‐6102 USA
  • Vitalie Stavila
    Energy Nanomaterials Sandia National Laboratories Livermore CA 94551 USA
  • Wei Zhou
    NIST Center for Neutron Research National Institute of Standards and Technology Gaithersburg MD 20899‐6102 USA
  • Albert Alec Talin
    Energy Nanomaterials Sandia National Laboratories Livermore CA 94551 USA
  • Alexei V. Soloninin
    Institute of Metal Physics Ural Branch of the Russian Academy of Sciences Ekaterinburg 620990 Russia
  • Roman V. Skoryunov
    Institute of Metal Physics Ural Branch of the Russian Academy of Sciences Ekaterinburg 620990 Russia
  • Olga A. Babanova
    Institute of Metal Physics Ural Branch of the Russian Academy of Sciences Ekaterinburg 620990 Russia
  • Alexander V. Skripov
    Institute of Metal Physics Ural Branch of the Russian Academy of Sciences Ekaterinburg 620990 Russia
  • Atsushi Unemoto
    WPI‐Advanced Institute for Materials Research Tohoku University Sendai 980‐8577 Japan
  • Shin‐Ichi Orimo
    Institute for Materials Research Tohoku University Sendai 980‐8577 Japan
  • Terrence J. Udovic
    NIST Center for Neutron Research National Institute of Standards and Technology Gaithersburg MD 20899‐6102 USA

書誌事項

公開日
2016-02-05
資源種別
journal article
権利情報
  • http://onlinelibrary.wiley.com/termsAndConditions#am
  • http://onlinelibrary.wiley.com/termsAndConditions#vor
DOI
  • 10.1002/aenm.201502237
  • 10.1002/aenm.201602386
公開者
Wiley

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説明

Both LiCB9H10 and NaCB9H10 exhibit liquid-like cationic conductivities (≥0.03 S cm–1) in their disordered hexagonal phases near or at room temperature. Furthermore, these unprecedented conductivities and favorable stabilities enabled by the large pseudoaromatic polyhedral anions render these materials in their pristine or further modified forms as promising solid electrolytes in next-generation, power devices.

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