Rchr
J-GLOBAL ID:201601011338858472   Update date: Mar. 29, 2024

Yoshitsugu Sone

ソネ ヨシツグ | Yoshitsugu Sone
Affiliation and department:
Research field  (1): Earth resource engineering, energy science
Research keywords  (1): 電池、燃料電池、水電解、炭酸ガス還元、宇宙探査、生命維持、閉鎖環境
Research theme for competitive and other funds  (13):
  • 2022 - 2031 Inovative methanation process at low temperature
  • 2020 - 2024 宇宙探査における生命維持のためのCO2からのO2回収:燃料電池システムの適用
  • 2021 - 2022 宇宙用硫化物系固体潤滑剤による界面制御技術を応用した全固体電池の開発
  • 2015 - 2020 Electrochemical reduction of carbon dioxide for the control of the closed environment.
  • 2015 - 2020 過酷温度環境作動リチウムイオン二次電池の開発
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Papers (112):
  • Yating Du, Sayoko Shironita, Daisuke Asakura, Eiji Hosono, Yoshitsugu Sone, Yugo Miseki, Eiichi Kobayashi, Minoru Umeda. Post-mortem analysis of the Li-ion battery with charge/discharge deterioration in high- and low-temperature environments. Electrochimica Acta. 2023. 473. 2024. 143421/1-143421/12
  • Hironori Nakajima, Henrik Ekström, Asuka Shima, Yoshitsugu Sone, Göran Lindbergh. Water Transport Modeling in a Microporous Layer for a Polymer Electrolyte Membrane Water Electrolyzer Having a Gas-Liquid Separating Interdigitated Flow Field. ECS Transactions. 2023
  • Shunji Kubota, Hironori Nakajima, Motohiko Sato, Asuka Shima, Masato Sakurai, Yoshitsugu Sone. Liquid Water Permeability in a Hydrophobic Microporous Layer for the Anode Interdigitated Flow Field of a Gas-Liquid Separating Polymer Electrolyte Membrane Water Electrolyzer. ECS Transactions. 2023
  • Yating Du, Sayoko Shironita, Eiji Hosono, Daisuke Asakura, Yoshitsugu Sone, Minoru Umeda. Differences in the deterioration behaviors of fast-charged lithium-ion batteries at high and low temperatures. Journal of Power Sources. 2022. 556. 2023. 232513/1-232513/10
  • Hironori NAKAJIMA, Asuka SHIMA, Mitsuhiro INOUE, Takayuki ABE, Hiroshige MATSUMOTO, Omar Samuel MENDOZA-HERNANDEZ, Yoshitsugu SONE. Three-Dimensional Numerical Modeling of a Low-Temperature Sabatier Reactor for a Tandem System of CO<sub>2</sub> Methanation and Polymer Electrolyte Membrane Water Electrolysis. Electrochemistry. 2022. 90. 6
more...
MISC (212):
Patents (69):
  • 燃料電池の制御方法
  • CELL FOR WATER ELECTROLYSIS/FUEL CELL POWER GENERATION AND CELL STACK BODY HAVING A PLURALITY OF SAME CELLS STACKED
  • Hydrogen-Oxygen Generation System and Hydrogen-Oxygen Generation Method
  • Methane synthesis device
  • 電池の充電状態又は放電深度を推定する方法及び市捨て宇、及び、電池の健全性を評価する方法及びシステム
more...
Lectures and oral presentations  (249):
  • 負極オペランドXRD測定による低温環境下のリチウムイオン脱挿入反応解析
    (電気化学会第91回大会 2024)
  • 深宇宙探査用イオン液体リチウム硫黄電池の高放射線量照射下における作動特性
    (電気化学会第91大会 2024)
  • バッテリ異常検知システム実証衛星Mono-Nikkoの開発状況
    (第67回宇宙科学連合講演会 2023)
  • 二酸化炭素還元-酸素製造タンデム型反応器の改修検討
    (第67回宇宙科学連合講演会 2023)
  • 切替時間をゼロとするリバーシブル再生型燃料電池の実現性
    (第67回宇宙科学連合講演会 2023)
more...
Work history (2):
  • 2003/10 - 現在 Japan Aerospace Exploration Agency Institute of Space and Astronautical Science Associate Professor
  • 1996/04 - 2003/09 National Space Development Agency of Japan Office of Research and Development Engineer/Associate Senior Engineer
Committee career (2):
  • 2024/11 - 現在 日本原子力学会 「宇宙原子力技術」研究専門委員会 委員
  • 2021/12 - 2022/02 UNISEC/JAXA UNISEC/JAXA 大学・高専の超小型衛星ミッションアシュアランスに関する有識者委員
Awards (3):
  • 2023/10 - 244th Meeting of Electrochemical Society Poster Award / Student poster competition, First place Liquid Water Permeability in a Hydrophobic Microporous Layer for the Anode Interdigitated Flow Field of a Gas-Liquid Separating Polymer Electrolyte Membrane Water Electrolyzer
  • 2015/03 - Electrochemical Society of Japan Awarded Article The first lithium-ion battery with ionic liquid electrolyte demonstrated in extreme environment of space
  • 2007/03 - Electrochemical Society of Japan Awarded Article The Performance of the Lithium-ion Secondary Cells under Micro-Gravity Conditions-In-Orbit Operation of the Interplanetary Spacecraft 'HAYABUSA'
Association Membership(s) (4):
日本原子力学会 ,  日本化学会 ,  日本航空宇宙学会 ,  日本電気化学会
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