Rchr
J-GLOBAL ID:200901034323870250   Update date: Nov. 20, 2024

Ishikawa Masashi

イシカワ マサシ | Ishikawa Masashi
Affiliation and department:
Job title: Professor
Homepage URL  (1): http://www2.kansai-u.ac.jp/elechem/
Research field  (3): Electronic devices and equipment ,  Basic physical chemistry ,  Energy chemistry
Research theme for competitive and other funds  (33):
  • 2023 - 2028 Development of lithium-sulfur batteries with low environmental impact and high performance
  • 2024 - 2025 広温度領域作動イオン液体リチウムイオン電池の開発(2)
  • 2023 - 2025 サーキュラー・エコノミーバッテリーの実用化開発とドローン搭載検証
  • 2019 - 2024 500Wh/kgの軽量蓄電池用硫黄正極及び電解液の要素技術の研究開発
  • 2022 - 2023 広温度領域作動イオン液体リチウムイオン電池の開発
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Papers (231):
  • Masato Kuroda, Morihiko Okuno, Yukiko Matsui, Masashi Ishikawa. Optimization of the Chemical Li Predoping Process of S-Confined Microporous Activated Carbon Positive Electrodes for Li-S Batteries. ACS Energy & Fuels. 2024
  • Masashi Ishikawa, Kaoru Dokko, Hsisheng Teng, Simon Lindberg, Jon Ajuria, Andrea Balducci, Elzbieta Frackowiak. Recent Progress in Electrolyte Systems for Supercapacitors. Electrochemistry. 2024. 92. 7. 074003
  • Takeshi Tonoya, Yukiko Matsui, Masashi Ishikawa. A Tuned Ether Electrolyte for Microporous Carbon-based Lithium-sulfur Batteries Enabling Long Cycle Life and High Specific Capacity. Electrochemistry. 2024. 92. 7. 077007
  • Takashi Hakari, Yuto Kameoka, Kaihei Kishida, Shinji Ozaki, Chihiro Murata, Minako Deguchi, Ryo Harada, Tomoki Fujisawa, Yusuke Mizuno, Heisuke Nishikawa, et al. Fully Carbonate-electrolyte-based Practical High-energy-density Li-S Batteries with Solid-phase Conversion. Carbon Energy. 2024
  • Adam Maćkowiak, Paweł Jeżowski, Yukiko Matsui, Masashi Ishikawa, Krzysztof Fic. Redox-active Electrolytes as a Viable Approach for the One-step Assembly of Metal-ion Capacitors. Energy Storage Materials. 2024. 65. 103163
more...
MISC (72):
  • 石川 正司, 内田 悟史. 第64回電池討論会開催報告. 電池技術. 2024. 36. 3-8
  • Fang-Yu Lu, Daisuke Okuda, Masashi Ishikawa, Toshiaki Ohta. Charge-discharge Mechanism of Cathode Materials Using Transition Metal and Oxygen Redox Reaction as Charge Compensation in Lithium-ion Batteries. 2024. 39-42
  • Daisuke Okudaa, Masashi Ishikawaa, Toshiaki Ohta. Charge-discharge Mechanism of Lithium-sulfur Batteries Using Ether Solvent. 2024. 30-33
  • 石川 正司. 次世代電池シリーズ(2)Li-S電池の動向. 矢野経済研究所月刊誌Yano E Plus. 2023. 2023. 11. 69-70
  • 吉田 瑠那, 石川 正司. Elucidation of Effect of Oxygen Functionalities inside Carbon Micropores on Li+ Diffusion in Cathode Active Materials of Lithium-sulfur Batteries. 2023. 73-77
more...
Patents (67):
  • 電解液、鋰硫二次電池及模組
  • リチウム硫黄二次電池用正極材料と、それを用いたリチウム硫黄二次電池、およびリチウム硫黄二次電池用正極材料の製造方法
  • Electrolyte Solution, Lithium Sulfur Secondary Battery and Module
  • Composition for Forming Electrode Binder Layer for Use in Lithium-sulfur Secondary Battery, Electrode for Lithium-sulfur Secondary Battery, and Lithium-sulfur Secondary Battery
  • Composition for Forming Electrode Binder Layer for Use in Lithium-sulfur Secondary Battery, Electrode for Lithium-sulfur Secondary Battery, and Lithium-sulfur Secondary Battery
more...
Books (58):
  • ポストリチウムイオン二次電池開発
    エヌ・ティー・エス 2023
  • 次世代二次電池の開発動向
    シーエムシー出版 2023
  • 2022次世代電池関連技術・市場の全貌
    富士経済 2022
  • イオン液体の実用展開へ向けた最新動向
    シーエムシー出版 2022
  • 蓄電デバイスの今後の展開と電解液の研究開発≪普及版≫
    シーエムシー出版 2021
more...
Lectures and oral presentations  (1,322):
  • Porous Carbon Anodes Stabilizing S Species for Li-S Batteries
    (11th Workshop “Lithium-Sulfur Batteries” 2024)
  • 極限環境下用イオン液体蓄電池の開発
    (加藤記念賞授賞式 2024)
  • Anion -Intercalated Cathode Concept for Fast and Stable Cycling of Lic and Battteries
    (PRiME2024 2024)
  • Performance of Lithium-sulfur Battery with Ionic Liquids for Deep Space Environment under High Radiation Dose
    (PRiME2024 2024)
  • Development of High-performance Lithium-ion Capacitor Using Reduced Nitrogen-doped Graphene as Capacitor-type Cathode Material Exhibiting Anomaly Anion Storage Mechanism
    (PRiME2024 2024)
more...
Works (3):
  • 第2週:分子を設計する・分子レベルで考える蓄電技術で エネルギー問題へ挑戦
    石川 正司 2014 - 2014
  • 比べてみよう豆電球とLEDの点灯時間
    石川 正司 2010 -
  • 電気をためるコンデンサーと車輪を回すマイクロモーター, MM(ミニミニ)カーのコンデンサーはどうやって働くの?
    石川 正司 2009 -
Education (2):
  • - 1987 Osaka University Graduate School, Division of Engineering
  • - 1985 Osaka University Faculty of Engineering
Professional career (2):
  • 工学博士
  • 工学修士
Work history (7):
  • 2014/04 - 現在 iElectrolyte Chief Executive Officer
  • 2005/04 - 現在 Kansai University Faculty of Chemistry, Materials and Bioengineering Professor
  • 2003/04 - 2005/03 Kansai University Faculty of Engineering Associate Professor
  • 1997/04 - 2003/03 Yamaguchi University, Associate Professor
  • 2000/06 - 2001/03 University of Minnesota, Visiting Professor
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Committee career (97):
  • 2022/01 - 現在 電気化学会 キャパシタ技術委員会 運営委員
  • 2022/01 - 現在 電気化学会 キャパシタ技術委員会 特別顧問
  • 2020/01 - 現在 電気化学会 関西支部 顧問
  • 2016/02 - 2025/12 電気化学会 電池技術委員会 幹事
  • 2024/05 - 2025/03 日本化学会 第105春季年会 会場小委員会 委員
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Awards (21):
  • 2024/09 - 公益社団法人加藤科学振興会 加藤記念賞 イオン液体蓄電池の開発
  • 2024/09 - Electrochemistry 2024 Bimonthly Most Downloaded Papers Ranked 2nd for Electrochemistry from July to August 2024 Recent Progress in Electrolyte Systems for Supercapacitors
  • 2024/04 - Advances in Engineering Selected for "Key Scientific Article" Improvement of Lithium-sulfur Battery Performance by Porous Carbon Selection and LiFSI/DME Electrolyte Optimization
  • 2023/11 - Ionic Liquid Research Association 第13回イオン液体討論会優秀ポスター賞 Physicochemical Properties and Battery Performance of Sulfonium-based FSA Ionic Liquid Containing Li Salt
  • 2021/09 - Electrochemistry 2021 Bimonthly Most Downloaded Papers Ranked 1st for Electrochemistry from July to August 2021 Effects of Lithium Salt Concentration in Ionic Liquid Electrolytes on Battery Performance of LiNi0.5Mn0.3Co0.2O2 Graphite Cells
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Association Membership(s) (14):
International Conference of Electrochemistry (ISE) ,  Electrochemical Society (ECS) ,  活性炭技術研究会 ,  イオン液体研究会 ,  Capacitors Forum ,  The Japan Society for Aeronautical and Space Sciences ,  The Kinki Chemical Society Japan ,  Society of Computer Chemistry, Japan ,  The Surface Finishing Society of Japan ,  Chemical Society of Japan ,  Electrochemical Society of Japan ,  社団法人 腐食防食協会 ,  西日本腐蝕防蝕研究会 ,  Material Research Society
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