Rchr
J-GLOBAL ID:200901067351516521
Update date: Oct. 14, 2024
Nakanishi Shuji
ナカニシ シュウジ | Nakanishi Shuji
Affiliation and department:
Job title:
Professor
Homepage URL (1):
http://www.rcsec.osaka-u.ac.jp/ec/index.html
Research field (2):
Environmental materials/recycling technology
, Energy chemistry
Research keywords (5):
Electrocatalyst
, Secondary Battery
, Artificial Photosynthesis
, Photosynthesis
, Electrochemistry
Research theme for competitive and other funds (12):
- 2019 - 2021 Artificial photosynthesis of sugar from CO2 by functional mimicry of the Calvin cycle
- 2018 - 2021 Systematic Understanding of the Formation Process of Lithium Peroxide for Increasing the Capacity of Aprotic Lithium Air Batteries
- 2016 - 2020 Mathematical model of electrochemical catalysis by chain reaction theory
- 2012 - 2016 Pioneer the Physical Chemistry of Biological Electron Transfer based on Bacterial Extracellular Electron Transport
- 2009 - 2010 Electrochemical metal/semiconductor coating of insulators
- 2007 - 2008 Oscillatory electrodeposition of metal latticeworks, toward theapplication as a device of surface enhanced Raman scattering
- 2005 - 2007 Global Bifurcation Analysis for tindorstruiding and Control of Pattern Dynan-dm
- 2005 - 2006 双安定系での顕微分光による非線形協同化学反応の機構解明
- 2002 - 2003 非線形化学現象による固体表面上での機能性動的ナノパターンの自発的形成
- 2002 - 2003 Exploitation of spontaneous formation of nano-structures through nonlinear chemical dynamics
- 電気化学振動現象に関する研究
- Study on Electrochemical Oscillation
Show all
Papers (171):
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Kiho Nishioka, Mizuki Tanaka, Terumi Goto, Ronja Haas, Anja Henss, Shota Azuma, Morihiro Saito, Shoichi Matsuda, Wei Yu, Hirotomo Nishihara, et al. Fluorinated Amide-Based Electrolytes Induce a Sustained Low-Charging Voltage Plateau under Conditions Verifying the Feasibility of Achieving 500 Wh kg<sup>-1</sup> Class Li-O<sub>2</sub> Batteries. ACS Applied Materials & Interfaces. 2024
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Kiho NISHIOKA, Shuji NAKANISHI. リチウム酸素二次電池における固体状放電生成物の還元的形成と酸化的分解. Vacuum and Surface Science. 2024. 67. 7. 310-315
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Shintaro Kato, Shotaro Ito, Shoko Nakahata, Ryo Kurihara, Takashi Harada, Shuji Nakanishi, Kazuhide Kamiya. Quantitative Analysis and Manipulation of Alkali Metal Cations at the Cathode Surface in Membrane Electrode Assembly Electrolyzers for CO2 Reduction Reactions. ChemSusChem. 2024
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Nanako Ishihara, Genta Chikatani, Hiroaki Nishijima, Hiro Tabata, Yoko Hase, Yoshiharu Mukouyama, Shuji Nakanishi, Shiho Mukaida. Developing a design guideline of boronic acid derivatives to scavenge targeted sugars in the formose reaction products using DFT-based machine learning. Chemistry Letters. 2024. 53. 6
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Kaito Nagita, Kazuhide Kamiya, Shuji Nakanishi, Yuji Hamamoto, Yoshitada Morikawa. CO Hydrogenation Promoted by Oxygen Atoms Adsorbed onto Cu(100). The Journal of Physical Chemistry C. 2024. 128. 11. 4607-4615
more...
MISC (91):
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田畑 裕, 加藤 創一郎, 中西 周次. 微生物を用いた物質生産の原料となり得る糖の効率的化学合成. バイオサイエンスとインダストリー / バイオサイエンスとインダストリー編集委員会 編. 2024. 82. 3. 289-291
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Kugako Sugimoto, Katsutoshi Hori, Masahito Ishikawa, I. T.O. Hidehiro, Toshiaki Kamachi, Kenya Tanaka, Yan Yu Chen, Shuji Nakanishi. Electrochemical Monitoring of Metabolic Activity of Methane/Methanol Conversing Methylococcus Capsulatus (Bath) Cells Based on Extracellular Electron Transfer. Electrochemistry. 2024. 92. 2
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草間翔子, 田中謙也, 畑野二郎, 河本尚大, 嶋川銀河, 田畑裕, 三宅里佳, 中西周次. Analysis of mechanism of extracellular electron transfer from cyanobacterium Synechocystis sp. PCC 6803. 電気化学会大会講演要旨集(CD-ROM). 2022. 89th
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田中謙也, 嶋川銀河, 田畑裕, 草間翔子, 中西周次, 中西周次. A quantitative demonstration of the NADP+/NADPH redox homeostasis in cyanobacterial cells. 日本植物生理学会年会(Web). 2021. 62nd
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草間翔子, 草間翔子, 児島征司, 木村拳, 田中謙也, 嶋川銀河, 奥村泰章, 中西周次, 中西周次. Deprivation of outer membrane enhances extracellular electron transfer activity of cyanobacterium Synechocystis sp. PCC 6803. 日本植物生理学会年会(Web). 2021. 62nd
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Education (2):
- - 2000 Osaka University
- - 2000 Osaka University Graduate School, Division of Engineering Science
Professional career (1):
Awards (1):
Association Membership(s) (4):
電気化学会
, 日本化学会
, Electrochemical Society of Japan
, Chemical Society of Japan
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