Rchr
J-GLOBAL ID:200901085908775914   Update date: Jun. 09, 2024

Mori Daisuke

モリ ダイスケ | Mori Daisuke
Affiliation and department:
Job title: 准教授
Homepage URL  (1): http://www.energy.chem.mie-u.ac.jp
Research field  (2): Inorganic materials ,  Inorganic compounds/materials chemistry
Research keywords  (10): ionic conductor ,  Lithium batteries ,  リチウム二オベート ,  ペロブスカイト ,  強誘電性 ,  酸化物 ,  極性 ,  エピタキシャル膜 ,  固体酸化物型燃料電池 ,  高圧合成
Research theme for competitive and other funds  (14):
  • 2022 - 2024 Development of High-power Cathode Materials for All Solid-State Batteries
  • 2019 - 2024 Development of solid state ionics materials based on nanoscale structures
  • 2019 - 2020 リチウムデンドライト抑制に向けた固体電解質の粒界および界面の改質
  • 2018 - 2019 アニオン配列制御による新規イオン導電体の創製
  • 2018 - 2019 相境界を利用した高容量リチウム二次電池正極材料の高レート特性の発現
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Papers (98):
  • Yasuaki Matsuda, Jun Nakajima, Yuta Inoue, Akihisa Ishikawa, Naoya Ueta, Daisuke Mori, Sou Taminato, Nobuyuki Imanishi, Takashi Fukushima, Shinya Higashimoto. Tunnel-Structured Phosphate Exhibiting High Proton Conductivity and Thermal Stability over a Wide Intermediate Temperature Range. Inorganic Chemistry. 2024
  • Sou Taminato, Akino Tsuka, Kento Sobue, Daisuke Mori, Yasuo Takeda, Osamu Yamamoto, Nobuyuki Imanishi. Stabilization of the Interface between a PEO-Based Lithium Solid Polymer Electrolyte and a 4-Volt Class Cathode, LiCoO2, by the Addition of LiPF6 as a Lithium Salt. Batteries. 2024
  • Ayaka Abe, Daisuke Mori, Zhichao Wang, Sou Taminato, Yasuo Takeda, Osamu Yamamoto, Nobuyuki Imanishi. Flexible High Lithium-Ion Conducting PEO-Based Solid Polymer Electrolyte with Liquid Plasticizers for High Performance Solid-State Lithium Batteries. ChemistryOpen. 2024. e202400041
  • Tetsuhiro Katsumata, Ryo Suzuki, Naoto Satoh, Ryoya Oda, Shingo Motoyama, Shunpei Suzuki, Mamoru Nakashima, Yoshiyuki Inaguma, Daisuke Mori, Akihisa Aimi, et al. Existence of Local Polar Domains in Perovskite Oxyfluoride, BaFeO2F. Chemistry of Materials. 2024
  • Ryosuke Goto, Sou Taminato, Daisuke Mori, Nobuyuki Imanishi. Synthesis and electrochemical properties of Li5 + xFe1-xMnxO4 with an antifluorite-type structure as a lithium battery cathode. Chemistry Letters. 2024. 53. 4
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MISC (16):
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Books (1):
  • 高圧力の科学・技術事典
    朝倉書店 2022 ISBN:9784254102970
Professional career (1):
  • 博士(理学) (東京工業大学)
Work history (6):
  • 2023 - 現在 Mie University Department of Applied Chemistry, Graduate School of Engineering Associate Professor
  • 2017 - 2022 Mie University Graduate School of Engineering
  • 2009 - 2017 Gakushuin University Faculty of Science
  • 2008/04 - 2009/03 JSPS
  • 2007/11 - 2008/03 AIST
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Committee career (5):
  • 2021/02 - 現在 電気化学会 電池技術委員会 事務局長
  • 2017 - 現在 日本化学会 編集委員
  • 2020 - 2022/09 17th Asian Conference of Solid State Ionics Secretary
  • 2012 - 2018 日本セラミックス協会 基礎科学部会委員
  • 2012 - 2018 日本セラミックス協会 行事企画委員
Awards (1):
  • 2011 - 田川記念固体化学奨励賞
Association Membership(s) (8):
The Japan Institute of Metals and Materials ,  The American Ceramic Society ,  日本固体イオニクス学会 ,  The Electrochemical Society ,  日本化学会 ,  日本セラミックス協会 ,  電気化学会 ,  粉体粉末冶金協会
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