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Shoichi Matsuda
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Poor Cycling Performance of Rechargeable Lithium–Oxygen Batteries under Lean‐Electrolyte and High‐Areal‐Capacity Conditions: Role of Carbon Electrode Decomposition
Description/Abstract:
There is growing demand for practical implementation of lithium–oxygen batteries (LOBs) due to their superior potential for achieving hig...
Keyword:
lithium oxygen battery
Resource Type:
Article
Author:
Manai Ono
,
Jittraporn Saengkaew
, and
Shoichi Matsuda
Journal:
Advanced Science
Date Uploaded:
19/06/2024
Evaluation of performance metrics for high energy density rechargeable lithium–oxygen batteries
Description/Abstract:
The demand for practical implementation of rechargeable lithium–oxygen batteries (LOBs) has grown owing to their extremely high theoretic...
Keyword:
lithium oxygen battery
Resource Type:
Article
Author:
Shoichi Matsuda
,
Eiki Yasukawa
,
Shin Kimura
,
Shoji Yamaguchi
, and
Kohei Uosaki
Journal:
Faraday Discussions
Date Uploaded:
19/06/2024
Performance evaluation of lithium metal rechargeable batteries with a lithium excess cation-disordered rocksalt based positive electrode under high mass loading and lean electrolyte conditions
Description/Abstract:
Although lithium excess cation-disordered rock salt (DRX) metal oxides have been identified as promising candidates for positive-electrod...
Keyword:
lithium metal battery
Resource Type:
Article
Author:
Jittraporn Saengkaew
,
Emiko Mizuki
, and
Shoichi Matsuda
Journal:
Energy Advances
Date Uploaded:
19/06/2024
New Insights into Fundamental Processes and Physical Degradation Mechanisms in Rechargeable Lithium‐Oxygen Batteries Providing Suitably High Energy Densities
Description/Abstract:
Lithium-oxygen batteries (LOBs) can exhibit high energy densities and so have attracted much attention as next-generation energy storage ...
Keyword:
lithium oxygen battery
Resource Type:
Article
Author:
Shoichi Matsuda
Journal:
ChemElectroChem
Date Uploaded:
19/06/2024
Hierarchically Porous and Minimally Stacked Graphene Cathodes for High‐Performance Lithium–Oxygen Batteries
Description/Abstract:
Although lithium–oxygen batteries have attracted attention due to their extremely high energy densities, rational design, and critical ev...
Keyword:
lithium oxygen battery
Resource Type:
Article
Author:
Wei Yu
,
Zhaohan Shen
,
Takeharu Yoshii
,
Shinichiroh Iwamura
,
Manai Ono
,
Shoichi Matsuda
,
Makoto Aoki
,
Toshihiro Kondo
,
Shin R. Mukai
,
Shuji Nakanishi
, and
Hirotomo Nishihara
Journal:
Advanced Energy Materials
Date Uploaded:
19/06/2024
Nature of Li<sub>2</sub>O<sub>2</sub> and its relationship to the mechanisms of discharge/charge reactions of lithium–oxygen batteries
Description/Abstract:
Lithium–air batteries (LABs) are considered one of the most promising energy storage devices because of their large theoretical energy de...
Keyword:
lithium oxygen battery
Resource Type:
Article
Author:
Yanan Gao
,
Hitoshi Asahina
,
Shoichi Matsuda
,
Hidenori Noguchi
, and
Kohei Uosaki
Journal:
Physical Chemistry Chemical Physics
Date Uploaded:
19/06/2024
Optimizing Discharge Rate for Li Metal Stability in Rechargeable Li|NMC Batteries under Lean Electrolyte Condition
Description/Abstract:
Recent studies have highlighted the impressive performance of lithium metal batteries (LMBs), showcasing cell-level energy densities surp...
Keyword:
battery diagnosis
,
discharge rate
,
failure analysis
,
high-capacity battery
, and
lithium metal battery
Resource Type:
Article
Author:
Arghya Dutta
,
Emiko Mizuki
,
Yuka Tomori
, and
Shoichi Matsuda
Journal:
ACS Applied Energy Materials
Date Uploaded:
19/06/2024
NIMS-OS: An automation software to implement a closed loop between artificial intelligence and robotic experiments in materials science
Description/Abstract:
NIMS-OS (NIMS Orchestration System) is a Python library created to realize a closed loop of robotic experiments and artificial intelligen...
Keyword:
NIMS-OS
,
artificial intelligence
, and
robotic experiments
Resource Type:
Article
Author:
Ryo Tamura
,
Koji Tsuda
, and
Shoichi Matsuda
Journal:
Science and Technology of Advanced Materials: Methods
Date Uploaded:
20/10/2023
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Creative Commons BY-NC-ND Attribution-NonCommercial-NoDerivs 4.0 International
7
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Shoichi Matsuda
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