DOKKO Kaoru

Affiliation

Faculty of Engineering, Division of Materials Science and Chemical Engineering

Job Title

Professor

Date of Birth

1973

Research Fields, Keywords

Electrochemistry, Lithium-Ion Batteries, Electrochemical Capacitors

Mail Address

E-mail address

Web Site

https://ynu-estlab.jp/

Related SDGs




ORCID  https://orcid.org/0000-0002-9622-4345

写真a

The Best Research Achievement in the last 5 years 【 display / non-display

  • 【Published Thesis】 Tetra-arm poly(ethylene glycol) gels with highly concentrated sulfolane-based electrolytes exhibiting high Li-ion transference numbers(Physical Chemistry Chemical Physics)  2023.07

    【Published Thesis】 Anionic Effects on Li-Ion Activity and Li-Ion Intercalation Reaction Kinetics in Highly Concentrated Li Salt/Propylene Carbonate Solutions(The Journal of Physical Chemistry C)  2023.03

    【Published Thesis】 Eutectic Electrolytes Composed of LiN(SO2F)2 and Sulfones for Li-Ion Batteries  2022.06

    【Published Thesis】 Solvate electrolytes for Li and Na batteries: structures, transport properties, and electrochemistry  2021.10

    【Published Thesis】 Understanding the Reductive Decomposition of Highly Concentrated Li Salt/Sulfolane Electrolytes during Li Deposition and Dissolution  2021.02

Education 【 display / non-display

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    2001.9

    Tohoku University   Department of Applied Chemistry   Doctor Course   Completed

  •  
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    1997.3

    Tohoku University   Graduated

Degree 【 display / non-display

  • Doctor of Engineering - Tohoku University

Campus Career 【 display / non-display

  • 2016.3
     
     

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

  • 2008.4
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    2016.2

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

  • 2020.10
     
     

    Concurrently   Yokohama National UniversityInstitute of Advanced Sciences   Professor  

  • 2018.4
     
     

    Concurrently   Yokohama National UniversityGraduate school of Engineering Science   Department of Chemistry, Chemical Engineering and Life Science   Professor  

  • 2016.3
     
     

    Concurrently   Yokohama National UniversityCollege of Engineering Science   Department of Chemistry, Chemical Engineering and Life Science   Professor  

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External Career 【 display / non-display

  • 2016.3
    -
    2022.3

     

  • 2015.4
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    2016.1

    Massachusetts Institute of Technology   Research Laboratory of Electronics   Visiting Scientist  

  • 2012.9
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    2016.2

     

  • 2011.4
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    2012.9

    Tohoku University   Center for Interdisciplinary Research   Visiting Associate Professor  

  • 2010.7
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    2011.3

     

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Research Areas 【 display / non-display

  • Nanotechnology/Materials / Energy chemistry

  • Nanotechnology/Materials / Inorganic compounds and inorganic materials chemistry

  • Nanotechnology/Materials / Nanometer-scale chemistry

 

Books 【 display / non-display

  • Interface Ionics

    Yosuke Ugata and Kaoru Dokko (Editors: Yasutoshi Iriyama, Koji Amezawa, Yoshitaka Tateyama, Naoaki Yabuuchi)( Role: Contributor ,  pp. 105-116, "Chapter 10 Li-Ion Transfer Kinetics at Interface Between Intercalation Electrode and Organic Electrolyte")

    Springer Singapore  ( ISBN:978-981-97-6039-8

    DOI

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    Total pages:565   Responsible for pages:105-116   Language:English Book type:Scholarly book

  • ポストリチウムイオン二次電池開発: 部材開発から解析・性能診断技術まで

    宇賀田 洋介、獨古 薫(監修:櫻井 庸司)( Role: Contributor ,  pp. 59-64, リチウム塩濃厚電解液の特性とリチウム金属負極の可逆性向上)

    エヌ・ティー・エス  ( ISBN: 978-4-86043-836-4

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    Total pages:492   Responsible for pages:59-64   Language:Japanese Book type:Scholarly book

  • The Latest Trend of the Development and Implementation of Ionic Liquids

    ( Role: Contributor)

    ( ISBN:978-4-7813-1674-1

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    Total pages:321   Responsible for pages:224-231   Language:Japanese Book type:Scholarly book

  • モビリティ用電池の化学

    獨古 薫(日本化学会 編)( Role: Contributor ,  pp. 57-63、リチウム硫黄電池(第Ⅱ部、4章))

    化学同人  ( ISBN:9784759814040

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    Total pages:200   Responsible for pages:57-63   Language:Japanese Book type:Scholarly book

  • Next Generation Batteries: Realization of High Energy Density Rechargeable Batteries

    Kaoru Dokko (Editor: K. Kanamura)( Role: Contributor ,  pp. 347-355, "S8 Cathode")

    Springer   ( ISBN:978-981-336-668-8

    Amazon

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    Total pages:594   Responsible for pages:347-355   Language:English Book type:Scholarly book

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Thesis for a degree 【 display / non-display

  • マイクロボルタンメトリーによるリチウムインターカレーションの電気化学的研究

    獨古 薫

    2001.9

    Doctoral Thesis   Single Work  

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    東北大学 工学研究科

    電気化学的にリチウムを結晶構造内に取り込むことができるLiCoO2などの遷移金属酸化物,グラファイトなどのリチウムインターカレーション材料の電気化学特性をマイクロ電極の手法を用いて研究を行った。マイクロ電極法を用いることにより、10ミクロン程度のリチウムインターカレーション材料の微粒子で起きる電気化学反応を解析する手法を確立し、微粒子と電解液の界面における電荷移動過程や固体内におけるLi+イオンの拡散過程を詳細に解析した結果を博士学位論文としてまとめた。

Papers 【 display / non-display

  • A partially fluorinated polymer network enhances the Li-ion transference number of sulfolane-based highly concentrated electrolytes

    Yukako Konishi, Hisashi Kokubo, Seiji Tsuzuki, Ryoichi Tatara and Kaoru Dokko

    Chemical Communications   60   12896 - 12899   2024.10  [Reviewed]

    DOI

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

  • Widening the Operational Temperature Range of Lithium Batteries Using Flame-Retardant Sulfone-Based Highly Concentrated Electrolytes

    Yosuke Ugata, Gakuto Wada, Shuhei Miyazaki, and Kaoru Dokko

    Journal of The Electrochemical Society   171   100508   2024.9  [Reviewed]

    DOI

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

  • Recent Progress in Electrolyte Systems for Supercapacitors

    Masashi ISHIKAWA, Kaoru DOKKO, Hsisheng TENG, Simon LINDBERG, Jon AJURIA, Andrea BALDUCCI, Elzbieta … Show more authors

    Electrochemistry   92   074003   2024.7  [Reviewed]

    DOI

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

  • Impact of Li Ion Transport Properties on Reversibility of Li Metal Electrode in Glyme-Based Electrolytes

    Junichi Murai, Toru Ishikawa, Gakuto Wada, Kaoru Dokko, Masayoshi Watanabe, Kazuhide Ueno

    ChemElectroChem   14   e202400054   2024.6  [Reviewed]

    DOI

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

  • Evolving better solvate electrolytes for lithium secondary batteries

    Frederik Philippi, Maleen Middendorf, Keisuke Shigenobu, Yuna Matsuyama, Oriele Palumbo, David Pugh … Show more authors

    Chemical Science   15   7342 - 7358   2024.4  [Reviewed]

    DOI

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

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Review Papers 【 display / non-display

  • 化学ポテンシャル制御に基づいた電解液設計

    宇賀田 洋介、獨古 薫

    化学   79 ( 8 )   70 - 71   2024.8

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

  • 次世代電池に向けた電解液およびゲル電解質の開発

    上野 和英,獨古 薫,渡邉 正義

    電池技術   34   182 - 188   2022.10

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (other)   Joint Work  

  • 溶融Li塩溶媒和物のLiイオン溶媒和とイオン輸送特性

    上野 和英,獨古 薫,渡邉 正義

    溶融塩および高温化学   65   19 - 24   2022.1

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (other)   Joint Work  

  • 溶融溶媒和物の特異なイオン伝導機構と電池適用の可能性

    獨古 薫、上野和英、渡邉 正義

    電池技術   32   27 - 34   2020.10

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (other)   Joint Work  

  • リチウム硫黄電池用電解液

    上野 和英,獨古 薫,渡邉 正義

    電気化学   87   195 - 199   2019.9

    DOI

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (other)   Publisher:電気化学会   Joint Work  

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Awards 【 display / non-display

  • 電気化学会学術賞

    2022.3   公益社団法人 電気化学会   電解質塩溶媒和物の基礎物性と蓄電池応用に関する研究

    Individual or group name of awards:獨古 薫

     More detail

    https://www.ynu.ac.jp/hus/engk2/27800/detail.html

  • 電気化学会論文賞

    2020.3   電気化学会  

    Individual or group name of awards:松前義治、小畑健造、安藤歩未、柳 逸人、亀井優太朗、上野和英、獨古 薫、渡邉正義

  • 横浜国立大学 優秀研究者賞(奨励賞)

    2013.3   横浜国立大学  

    Individual or group name of awards:獨古 薫

  • 電池技術委員会賞

    2012.11   電気化学会  

    Individual or group name of awards:獨古 薫

  • 電気化学会論文賞

    2010.3   電気化学会  

    Individual or group name of awards:菅野裕士, 丸山 剛,獨古 薫,金村聖志

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Presentations 【 display / non-display

  • 液系リチウム硫黄電池の課題と電解液最適化による実用化へのアプローチ

    獨古 薫  [Invited]

    電気化学セミナーC  2023.11  電気化学会

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    Event date: 2023.11

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Venue:東京  

  • Eutectic Electrolytes Composed of Li-Salts and Sulfones Exhibiting High Li-Ion Transference Numbers

    Kaoru Dokko  [Invited]

    ICAC2023  2023.9 

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    Event date: 2023.9

    Language:English   Presentation type:Oral presentation (invited, special)  

    Venue:Kamakura, Japan  

  • 濃厚電解液の特異なイオン輸送機構

    獨古 薫  [Invited]

    キャパシタ技術委員会2023年度・第1回研究会  2023.1 

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    Event date: 2023.1

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Venue:東京  

  • Solvate Electrolytes for Lithium Batteries

    獨古 薫  [Invited]

    化学系学協会東北大会  2022.9 

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    Event date: 2022.9

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Venue:盛岡  

  • 電解質塩溶媒和物の基礎物性と蓄電池応用に関する研究

    獨古 薫  [Invited]

    電気化学会第89回大会  2022.3 

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    Event date: 2022.3

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Venue:オンライン  

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Charge of on-campus class subject 【 display / non-display

  • 2024   Exercise in Energy and Sustainable Chemistry BF

    Graduate school of Engineering Science

  • 2024   Exercise in Energy and Sustainable Chemistry BS

    Graduate school of Engineering Science

  • 2024   Chemistry of Electron Transfer Reactions

    Graduate school of Engineering Science

  • 2024   Advanced Study on Career Design (PSD)

    Graduate school of Engineering Science

  • 2024   Multi-diciplinary Problem Based Learning in Graduate School of Engineering Science

    Graduate school of Engineering Science

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