SUGAWARA Yuuki

Affiliation

Faculty of Engineering, Division of Materials Science and Chemical Engineering

Job Title

Assistant Professor

Date of Birth

1986

Mail Address

E-mail address



 https://orcid.org/0000-0002-2696-1833

写真a

Education 【 display / non-display

  • 2011.4
    -
    2014.3

    Tokyo Institute of Technology   Doctor Course   Completed

  • 2009.4
    -
    2011.3

    Tokyo Institute of Technology   Master Course   Completed

  • 2005.4
    -
    2009.3

    Tokyo Institute of Technology   Graduated

Degree 【 display / non-display

  • Doctor of Engineering - Tokyo Institute of Technology

Campus Career 【 display / non-display

  • 2026.4
     
     

    Duty   Yokohama National UniversityFaculty of Engineering   Division of Materials Science and Chemical Engineering   Assistant Professor  

External Career 【 display / non-display

  • 2024.10
    -
    2026.3

      Assistant Professor  

  • 2018.4
    -
    2024.9

      Assistant Professor  

  • 2017.6
    -
    2018.3

      Part-time researcher for university or other academic organization  

  • 2016.4
    -
    2017.5

      Researcher  

  • 2014.4
    -
    2016.3

      Researcher  

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Academic Society Affiliations 【 display / non-display

  • 2020.12
     
     
     

    電気化学会

  • 2010.4
     
     
     

    化学工学会

  • 2024.4
     
     
     

    水素エネルギー協会(HESS)

  • 2023.6
     
     
     

    水素・燃料電池開発情報センター

  • 2022.4
     
     
     

    触媒学会

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Books 【 display / non-display

  • 触媒年鑑 触媒技術の動向と展望

    菅原勇貴, 山口猛央( Role: Contributor ,  2) アニオン交換膜型水電解用電極触媒の設計論)

    公益社団法人 触媒学会 

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    Total pages:408   Responsible for pages:124-133   Language:Japanese Book type:Scholarly book

  • データ科学・計算化学による水電解用複合酸化物触媒の活性指標解析

    菅原 勇貴( Role: Contributor)

    株式会社 情報機構  ( ISBN:978-4-86502-258-2

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    Language:Japanese Book type:Scholarly book

  • アニオン交換膜形水電解アノード反応に用いる高性能電極触媒の設計論

    菅原勇貴 and 山口猛央( Role: Contributor)

    株式会社シーエムシー・リサーチ  ( ISBN:978-4-910581-40-8

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    Language:Japanese Book type:Scholarly book

  • モデル計算と第一原理計算を活用した燃料電池および水電解デバイスの触媒層・電解質膜の設計開発

    菅原勇貴 and 山口猛央( Role: Contributor)

    技術情報協会  ( ISBN:978-4-86104-854-8

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    Language:Japanese Book type:Scholarly book

  • RSC Smart Materials Series No 35, Smart Membranes

    Yuuki sugawara, Takeo Yamaguchi( Role: Contributor ,  Biomolecule-recognition Smart Gating Membranes)

    Royal Society of Chemistry  ( ISBN:978-1-78801-243-0

    DOI

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    Total pages:426   Responsible for pages:230-254   Language:English Book type:Scholarly book

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Thesis for a degree 【 display / non-display

  • DNA複合化分子認識材料の開発

    菅原勇貴

    2014.3

    Doctoral Thesis   Single Work  

Papers 【 display / non-display

  • Comprehensive Hydrogen Evolution Descriptors for Nonprecious Metal Oxide Electrocatalysts

    Yuuki Sugawara, Issei Kohara, Yuki Saito, Yosuke Hamasaki, Keigo Kamata, Mitsuru Itoh, Takeo Yamagu … Show more authors

    ChemElectroChem   13 ( 9 )   e70213   2026.4  [Reviewed]  [Invited]

    DOI

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    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)   Single Work  

  • Electrochemical oxygen evolution catalysis of metal sulfides: a systematic study of electronic effects

    Sugawara, Y; Uchiyama, T; Shishkin, M; Yamaguchi, T

    CATALYSIS SCIENCE & TECHNOLOGY   15 ( 17 )   5004 - 5013   2025.8  [Reviewed]

    DOI Web of Science

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    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)   Joint Work  

  • Electrocatalysts for Hydrogen Production - Catalyst Design Strategies Based on Crystal Structures of Multimetal Oxides

    Sugawara, Y; Yamaguchi, T

    CHEMICAL RECORD   25 ( 5 )   2025.5  [Reviewed]  [Invited]

    DOI Web of Science PubMed

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    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)   Joint Work  

    <jats:title>Abstract</jats:title><jats:p>Solid‐state crystalline multimetal oxides have been widely studied for their applications as electrode materials, e. g., in fuel cells, water electrolyzer, lithium‐ion batteries, and metal‐air batteries. Particularly, hydrogen production via water electrolysis is considered a key technology for realizing a sustainable circular carbon society. Enhancing the activity of electrocatalysts is a critical challenge for improving the efficiency of the water electrolysis technology. Thus, strategies for designing prominent catalyst materials have drawn considerable attention. Our group has been conducting research aimed at establishing comprehensive design strategies for the rational and rapid development of highly active catalysts. In this Personal Account, we present our research efforts on enhancing the activity of cost‐efficient nonprecious metal‐based oxide catalysts for the oxygen evolution reaction at the anode of water electrolysis. Specifically, we propose design strategies based on crystal structures of multimetal oxides and demonstrate how these strategies have contributed to the development of highly active electrocatalysts.</jats:p>

  • Ultrasmall Manganese Nanospinels Produced via an Alcohol Reduction Method and Their Electrocatalytic Oxygen Evolution Reactivity

    Sugawara, Y; Iwase, K; Iimura, R; Yabu, T; Nasu, A; Matsui, M; Honma, I; Yamaguchi, T; Kobayashi, H

    ACS APPLIED MATERIALS & INTERFACES   17 ( 15 )   22487 - 22497   2025.4  [Reviewed]

    DOI Web of Science PubMed

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    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)   Joint Work  

  • Crystal Structures of Iron-Based Oxides and Their Catalytic Efficiencies for the Oxygen Evolution Reaction: A Trend in Alkaline Media

    Sugawara, Y; Ueno, S; Kamata, K; Yamaguchi, T

    CHEMELECTROCHEM   9 ( 9 )   2022.5

    DOI Web of Science

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    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)   Joint Work  

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Review Papers 【 display / non-display

  • 化学工学年鑑2025、10章 資源・エネルギー、10.2 エネルギー変換技術 (電解、CO2還元、アンモニア合成、燃料電池)

    菅原勇貴

    化学工学   89 ( 10 )   57 - 58   2025.10

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    Authorship:Lead author, Last author, Corresponding author   Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)   Single Work  

  • データ科学による高性能水電解用触媒の設計

    菅原勇貴

    電気化学   93 ( 1 )   5 - 8   2025.3

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    Authorship:Lead author, Last author, Corresponding author   Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)   Single Work  

  • 水電解用鉄系触媒の結晶構造に基づく包括的触媒設計論の確立および高性能触媒の開発

    菅原勇貴

    JACI NEWS LETTER   89   10   2024.9

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    Authorship:Lead author, Last author, Corresponding author   Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)   Single Work  

  • インフォマティックス手法を活用した卑金属電極触媒の効率設計

    菅原勇貴

    燃料電池   24 ( 1 )   41 - 45   2024.7

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    Authorship:Lead author, Last author, Corresponding author   Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)   Single Work  

  • アニオン交換膜型水電解技術の必要性と進展

    宮西将史 and 菅原勇貴 and 黒木秀記 and 山口猛央

    燃料電池   2024.1

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (scientific journal)   Single Work  

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Awards 【 display / non-display

  • 令和7年度 科学技術分野の文部科学大臣表彰, 若手科学者賞

    2025.4   文部科学省  

    Individual or group name of awards:菅原勇貴

  • GSC賞 奨励賞

    2024.5   公益社団法人 新化学技術推進協会(JACI)  

    Individual or group name of awards:菅原勇貴

  • FCDIC顕彰 奨励賞

    2024.2   一般社団法人 燃料電池開発情報センター  

    Individual or group name of awards:菅原勇貴

  • Next Generation of Polymer Researchers

    2023.12   Wiley-VCH社 Macromolecular Chemistry and Physics誌  

    Individual or group name of awards:Yuuki Sugawara

  • 化学工学会 システム・情報・シミュレーション(SIS)部会研究奨励賞

    2023.9   化学工学会 システム・情報・シミュレーション(SIS)部会  

    Individual or group name of awards:菅原勇貴

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Grant-in-Aid for Scientific Research 【 display / non-display

  • 結晶構造に着目した直接海水電解用電極触媒の設計論の構築

    Grant number:25K01561  2025.4 - 2028.3

    Grant-in-Aid for Scientific Research(C)

    Investigator(s):菅原勇貴

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    Authorship:Principal investigator  Grant type:Competitive

  • 機械学習に基づくアルカリ水電解用酸化物触媒の設計と高耐久水電解セルシステムの構築

    Grant number:20K15087  2020.4 - 2023.3

    Grant-in-Aid for Early-Career Scientists

    Investigator(s):菅原勇貴

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    Authorship:Principal investigator  Grant type:Competitive

  • 蛍光を利用した分子認識ゲート膜の高感度化およびアウトプットの可視化

    Grant number:18K14041  2018.4 - 2020.3

    Grant-in-Aid for Early-Career Scientists

    Investigator(s):菅原勇貴

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    Authorship:Principal investigator  Grant type:Competitive

  • DNAアプタマーと合成ポリマーの融合による特異的分子認識材料の開発

    Grant number:11J09545  2011.4 - 2024.3

    DC1  Grant-in-Aid for JSPS Fellows

    Investigator(s):菅原勇貴

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    Authorship:Principal investigator  Grant type:Competitive

 

Committee Memberships 【 display / non-display

  • 公益社団法人 電気化学会

    2026.3  代議員

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    Committee type:Academic society 

  • 公益社団法人 電気化学会 関東支部

    2025.1  幹事

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    Committee type:Academic society 

  • 2027電気化学秋季大会

    2026.8  実行委員

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    Committee type:Academic society 

  • 公益社団法人 化学工学会 関東支部 若手の会

    2024.4  幹事

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    Committee type:Academic society 

  • 一般社団法人 水素エネルギー協会 (HESS) 第44, 45回大会

    2024.3  実行委員

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    Committee type:Academic society 

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Media Coverage 【 display / non-display

  • 水の電気分解用、安価な触媒開発

    日本経済新聞  朝刊11面  2021.3

  • 水の電解触媒 価格3万分の1

    日経産業新聞  6面  2021.3

  • 鉄とカルシウム CO2削減の『切り札』に

    産経ニュース  2021.3

  • 硫黄を味方に!水からクリーンなエネルギーを生み出す新しいヒント

    みんなの科学ニュース  2025.10

  • 水電解用金属硫化物触媒の包括的活性指標の発見

    Science Tokyo ニュース  2025.7

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