発表論文2026年
List of Publications(2026)
26-01. Elastic Properties of Diverse Sodium-Ion Conductive Materials: A First-Principles Study
M. Torii, A. Sakuda, K. Motohashi and A. Hayashi
Mater. Adv., 7, 484-494 (2026).
https://doi.org/10.1039/d5ma00912j
26-02. Synthesis of Li10GeP2S12 Electrolyte Using Aqueous Solution
T. Hashii, H. Tanigaki, H. Sakashita, H. Kowada, K. Motohashi, A. Sakuda and A. Hayashi
J. Am. Chem. Soc., 148 [4] 4198-4205 (2026).
https://doi.org/10.1021/jacs.5c16397
26-03. Oxygen- and Fluorine-Doped Li3PS4 Glass-Ceramic Electrolytes Compatible with Lithium Metal Electrodes for All-Solid-State Batteries
T. Asakura, R. Izawa, S. Sato, T. Kimura, C. Hotehama, H. Kowada, K. Motohashi, A. Sakuda, M. Tatsumisago and A. Hayashi
Chem. Mater., 38 [3] 1253-1260 (2026).
https://doi.org/10.1021/acs.chemmater.5c02634
26-04. Influence of Preparation Conditions of Composite Positive Electrodes for Enhanced Reversible Capacity in All-Solid-State Na/S Batteries
Y. Kizuki, Y. Fujita, K. Motohashi, A. Sakuda and A. Hayashi
Electorochemistry, 94 [4] (047005) 1-7 (2026).
https://doi.org/10.5796/electrochemistry.26-00004
26-05. Preparation and Characterization of Na6FeS4 and Na7Fe2S6 as Positive Electrode Active Materials for All-Solid-State Sodium Batteries
Y. Doi, T. Otono, K. Motohashi, A. Sakuda and A. Hayashi
J. Ceram. Soc. Jpn., 134 [4] 297-302 (2026).
https://doi.org/10.2109/jcersj2.26003
26-06. Na5FeS4 as High-Capacity Positive Electrode ActiveMaterial for All-Solid-State Sodium Batteries
Y. Doi, T. Otono, Y. Fujita, R. Kato, M. Torii, J. Ding, S. Mori, K. Motohashi, A. Sakuda and A. Hayashi
Batteries & Supercaps, 9 [4] (e202500551) 1-8 (2026).
https://doi.org/10.1002/batt.202500551
26-07. Continuous-flow Synthesis of Spherical Li4SnS4 Solid Electrolyte Particles via Spray Drying
R. Osaki, H. Tanigaki, M. Iwao, S. Ohsaki, K. Motohashi, A. Sakuda, A. Hayashi, H. Nakamura and S. Watano
Powder Technol., 480, 122649 (2026).
https://doi.org/10.1016/j.powtec.2026.122649
26-08. Liquid-Phase Synthesis of Lithium Argyrodite Sulfide Electrolytes Using Tetrahydrofuran and Water
T. Hashii, H. Tanigaki, T. Furukawa, H. Kowada, K. Motohashi, A. Sakuda and A. Hayashi
Langmuir, 42, 16081-16088 (2026).
https://doi.org/10.1021/acs.langmuir.5c06765
26-09. メカノケミカル反応の基礎と社会実装
(監修:齋藤文良)(著書・分担執筆)
本橋宏大, 作田 敦, 林 晃敏
執筆項目「メカノケミカル法を用いたナトリウムイオン伝導性塩化物の開発」pp.176-181
エヌ・ティー・エス (2026).
ISBN 978-4-86043-516-5
26-10. Insertion of SnF2-C Layer between Current Collector and Li3PS4-LiI Glass Electrolytes for Improving Li Deposition Behavior
D. Suehiro, K. Oyama, T. Shigeno, T. Asakura, H. Kowada, C. Hotehama, K. Motohashi, H. Munakata, A. Sakuda and A. Hayashi
Electorochemistry, (in press) (2026).
https://doi.org/10.5796/electrochemistry.26-00041
26-11 全固体電池の研究開発動向と実用化への展望
(編集:平田幸久)(著書・分担執筆)
作田 敦, 本橋宏大, 林 晃敏
執筆項目「硫化物系固体電解質の材料特性と特徴、課題」pp.123-141
R&D支援センター (2026).
ISBN 978-4-905507-83-3 C3053
26-12. 全固体電池の材料開発と界面制御の最前線
(編集:小林直哉)(著書・分担執筆)
朝倉大智, 本橋宏大, 棟方裕一, 作田 敦, 林 晃敏
執筆項目「全固体リチウム硫黄電池に向けた硫化物系固体電解質」pp.57-64
シーエムシー出版 (2026).
ISBN 978-4-7813-1926-1 C3054
26-13. 全固体電池の材料開発と界面制御の最前線
(編集:小林直哉)(著書・分担執筆)
本橋宏大, 棟方裕一, 作田 敦, 林 晃敏
執筆項目「全固体電池にへの応用にむけたナトリウムイオン伝導性硫化物電解質の開発」pp.73-80
シーエムシー出版 (2026).
ISBN 978-4-7813-1926-1 C3054
26-14. Mechanochemical Synthesis of Fluorine-doped NaTaCl6 Electrolytes
T. Magome, K. Motohashi, T. Nakao, H. Munakata, A. Sakuda and A. Hayashi
Chemistry Letters, 55 [8] (upag143) 1-5 (2026).
https://doi.org/10.1093/chemle/upag143
26-15. Amorphization-Induced Enhancement of Ionic Conductivity of ZrO2-NaTaCl6 Composites
T. Magome, K. Motohashi, T. Nakao, H. Munakata, A. Sakuda and A. Hayashi
ACS Appl. Energy Mater., 9 [15] 10047-10053 (2026).
https://doi.org/10.1021/acsaem.6c01428
26-16. Time-Temperature-Transformation Diagrams to Navigate the Nucleation and Quenchability of Metastable α-Li3PS4
A. Miura, W. Baek, Y. Fujii, K. Tadanaga, R. Hossain, A. Yamashita, Y. Mizuguchi, C. Moriyoshi, S. Kobayashi, S. Kawaguchi, D. Jiong, S. Mori, A. Sakuda, A. Hayashi and W. Sun
Nat. Commun., (in press) (2026).
https://doi.org/10.1038/s41467-026-76661-7