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Examination of Morphological Changes of Active Materials for Solution-Based Rechargeable Fluoride Shuttle Batteries Using In Situ Electrochemical Atomic Force Microscopy Measurements Okazaki, Ken-ichi; Nakamoto, Hirofumi; Yamanaka, Toshiro; Fukunaga, Toshiharu; Ogumi, Zempachi; Abe, Takeshi (2022-09-27) Chemistry of Materials, 34(18): 8280-8288 | |
Evolution of fluoride shuttle battery reactions and three-dimensional morphology changes of BiF3 microparticles in an ethylene carbonate-based liquid electrolyte Yamanaka, Toshiro; Ogumi, Zempachi; Abe, Takeshi (2022-09-01) Energy Advances, 1(9): 632-640 | |
Complexation of F⁻ by Li⁺ and Mg²⁺ Ions as Inorganic Anion Acceptors in Lactone-Based Li⁺/F⁻ and Mg²⁺/F⁻ Hybrid Electrolytes for Fluoride Shuttle Batteries Kawasaki, Mitsuo; Morigaki, Ken-Ichi; Kano, Gentaro; Takekawa, Reiji; Kawamura, Junichi; Yokoyama, Yuko; Kano, Kenji; Abe, Takeshi; Ogumi, Zempachi (2022-11) Journal of The Electrochemical Society, 169(11) | |
Improved electrochemical performances in a bismuth fluoride electrode prepared using a high energy ball mill with carbon for fluoride shuttle batteries Konishi, Hiroaki; Kucuk, Asuman Celik; Minato, Taketoshi; Abe, Takeshi; Ogumi, Zempachi (2019-04-15) Journal of Electroanalytical Chemistry, 839: 173-176 | |
Interface structure between tetraglyme and graphite Minato, Taketoshi; Araki, Yuki; Umeda, Kenichi; Yamanaka, Toshiro; Okazaki, Ken-ichi; Onishi, Hiroshi; Abe, Takeshi; Ogumi, Zempachi (2017-09-25) The Journal of Chemical Physics, 147(12) | |
Surface and interface sciences of Li-ion batteries Minato, Taketoshi; Abe, Takeshi (2017-12) Progress in Surface Science, 92(4): 240-280 | |
Difference of rate performance between discharge and charge reactions for bismuth fluoride electrode in lithium-ion battery Konishi, Hiroaki; Minato, Taketoshi; Abe, Takeshi; Ogumi, Zempachi (2017-12-01) Journal of Electroanalytical Chemistry, 806: 82-87 | |
Charge and Discharge Reactions of a Lead Fluoride Electrode in a Liquid‐Based Electrolyte for Fluoride Shuttle Batteries:‐The Role of Triphenylborane as an Anion Acceptor‐ Konishi, Hiroaki; Minato, Taketoshi; Abe, Takeshi; Ogumi, Zempachi (2019-5) ChemistrySelect, 4(19): 5984-5987 | |
Electrochemical performance of a lead fluoride electrode mixed with carbon in an electrolyte containing triphenylboroxine as an anion acceptor for fluoride shuttle batteries Konishi, Hiroaki; Minato, Taketoshi; Abe, Takeshi; Ogumi, Zempachi (2019-03-15) Materials Chemistry and Physics, 226: 1-5 | |
Electrochemical properties of lead fluoride electrode in fluoride shuttle battery Konishi, Hiroaki; Minato, Taketoshi; Abe, Takeshi; Ogumi, Zempachi (2018-10-01) Journal of Electroanalytical Chemistry, 826: 60-64 |
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