Rchr
J-GLOBAL ID:202001006418672409   Update date: Mar. 24, 2024

Maeyoshi Yuta

マエヨシ ユウタ | Maeyoshi Yuta
Affiliation and department:
Job title: Senior Researcher
Research field  (5): Nanomaterials ,  Electronic devices and equipment ,  Organic functional materials ,  Polymer materials ,  Energy chemistry
Research keywords  (3): Polymer materials ,  Batteries ,  Electrochemistry
Research theme for competitive and other funds  (5):
  • 2023 - 2027 高エネルギー密度を有する高温作動長寿命リチウム系電池の開発
  • 2023 - 2026 共役系高分子による金属Li負極の被膜設計
  • 2022 - 2024 有機系固体電解質/金属Li負極界面の設計とそのイオンダイナミクス
  • 2021 - 2023 高効率・長寿命金属リチウム二次電池の実現に向けた多機能被膜の創製
  • 2021 - 2022 リチウム塩高濃度電解液と高分子からなる新規ゲル電解質の創製と金属リチウム負極への応用
Papers (26):
  • Kazuki Yoshii, Yuta Maeyoshi, Takuya Uto, Toshiyuki Moriuchi. Trifluoroacetamide-Based Eutectic Electrolyte with High Oxidative Stability. ECS Meeting Abstracts. 2023
  • Yuta Maeyoshi, Kazuki Yoshii, Hikari Sakaebe. Stable Cycling of High-Voltage Lithium Metal Batteries Enabled By Highly Concentrated Sulfolane-Based Gel Electrolytes. ECS Meeting Abstracts. 2023
  • Kazuki Yoshii, Kazushige Kohno, Yuta Maeyoshi, Noboru Taguchi, Akira Yano, Tomonari Takeuchi, Hikari Sakaebe. Enhancing the Cyclability of VS 4 Positive Electrode in Carbonate-Based Electrolyte using Fluoroethylene Carbonate Additive. Batteries & Supercaps. 2022. 5. 6
  • Yuta MAEYOSHI, Kazuki YOSHII, Hikari SAKAEBE. Stable Lithium Metal Plating/Stripping in a Localized High-Concentration Cyclic Carbonate-Based Electrolyte. Electrochemistry. 2022. 90. 4
  • Yuta Maeyoshi, Kazuki Yoshii, Masahiro Shikano, Hikari Sakaebe. Improving Cycling Stability of Vanadium Sulfide (VS4) as a Li Battery Cathode Material Using a Localized High-Concentration Carbonate-Based Electrolyte. ACS Applied Energy Materials. 2021
more...
MISC (4):
  • 佐野 光, 前吉 雄太, 吉井 一記. 金属Li負極の研究開発動向-特集 次世代電池用負極材料の進展. 電気化学 / 電気化学会 編. 2023. 91. 4. 388-391
  • Yuta Maeyoshi, Hidetoshi Abe, Kiyoshi Kanamura. Enhanced Cycle Performance of Lithium Cobalt Phosphate as a High-Voltage Cathode Material for Lithium-Ion Batteries by Using a Three-Dimensionally Ordered Macroporous Polyimide Separator. FB Technical News. 2018. 74. 10-15
  • Yuta Maeyoshi, Hidetoshi Abe. Technological Trend of Advanced Batteries. FB Technical News. 2017. 73. 30-32
  • 長副やよい, 和久井茂晴, 前吉雄太. Technology for Prediction of Housing Wear due to Outer Ring Creep under Bearing Load. Honda R&D Technical Review. 2015. 27. 2
Patents (2):
Education (3):
  • 2014 - 2017 Tokyo Metropolitan University Graduate School of Urban Environmental Sciences Department of Applied Chemistry
  • 2010 - 2012 Osaka University Graduate School of Engineering Division of Applied Chemistry
  • 2006 - 2010 Osaka University School of Engineering Division of Applied Science
Professional career (2):
  • Doctor of Engineering (Tokyo Metropolitan University)
  • Master of Engineering (Osaka University)
Work history (4):
  • 2023/10 - 現在 National Institute of Advanced Industrial Science and Technology Research Institute of Electrochemical Energy, Department of Energy and Environment Senior Researcher
  • 2020/04 - 2023/09 National Institute of Advanced Industrial Science and Technology (AIST) Research Institute of Electrochemical Energy, Department of Energy and Environment Researcher
  • 2017/07 - 2020/03 ABRI Co., Ltd.
  • 2012/04 - 2017/06 Honda R&D Co., Ltd. Automotive R&D Center
Awards (2):
  • 2013/06 - The Photopolymer Science and Technology Award, The Best Paper Award
  • 2011/12 - Award for Encouragement of Research in the 21st Symposium of MRS-J
Association Membership(s) (4):
The Chemical Society of Japan ,  The Committee of Battery Technology ,  The Society of Polymer Science, Japan ,  The Electrochemical Society of Japan
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