Rchr
J-GLOBAL ID:201801012551501015   Update date: Feb. 03, 2023

Matsuda Shoichi

マツダ ショウイチ | Matsuda Shoichi
Affiliation and department:
Job title: Senior Researcher
Research field  (1): Energy chemistry
Research theme for competitive and other funds  (4):
  • 2021 - 2025 実験自動化技術とデータ科学の連携による海水電解材料のハイスループット探索
  • 2020 - 2023 Study of charging process at positive electrode in rechargeable lithium-air battery
  • 2018 - 2021 Systematic Understanding of the Formation Process of Lithium Peroxide for Increasing the Capacity of Aprotic Lithium Air Batteries
  • 2012 - 2015 有用物質・エネルギー生産を志向した微生物代謝の電気化学的制御
Papers (36):
  • Ryota Tamate, Shoichi MATSUDA. Asymmetric Volume Expansion of the Lithium Metal Electrode in Symmetric Lithium/Lithium Cells under Lean Electrolyte and High Areal Capacity Conditions. ACS Applied Energy Materials. 2023. 6. 1. 573-579
  • Jittraporn Saengkaew, Takashi Kameda, Manai Ono, Emiko Mizuki, Shintaroh Nagaishi, Shinichiroh Iwamura, Shin Mukai, Shoichi MATSUDA. Carbon Gel-Based Self-Standing Membranes as the Positive Electrodes of Lithium-Oxygen Batteries under Lean-Electrolyte and High-Areal-Capacity Conditions. The Journal of Physical Chemistry C. 2023. 127. 2. 939-948
  • Shoichi Matsuda, Guillaume Lambard, Keitaro Sodeyama. Article Data-driven automated robotic experiments accelerate discovery of multi-component electrolyte for rechargeable Li-O-2 batteries. CELL REPORTS PHYSICAL SCIENCE. 2022. 3. 4
  • Kiho Nishioka, Morihiro Saito, Manai Ono, Shoichi Matsuda, Shuji Nakanishi. N,N-Dimethylethanesulfonamide as an Electrolyte Solvent Stable for the Positive Electrode Reaction of Aprotic Li-O-2 Batteries. ACS APPLIED ENERGY MATERIALS. 2022. 5. 4. 4404-4412
  • Jittraporn Saengkaew, Takashi Kameda, Manai Ono, Shoichi Matsuda. Self-standing porous carbon electrodes for lithium-oxygen batteries under lean electrolyte and high areal capacity conditions. MATERIALS ADVANCES. 2022. 3. 8. 3536-3544
more...
Patents (21):
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