YOSHITAKE Hideaki

Affiliation

Faculty of Engineering, Division of Materials Science and Chemical Engineering

Job Title

Professor

Research Fields, Keywords

XAFS, mesoporous materials, Interfacial reactions, Organic-inorganic hybride mesostructured materials

Mail Address

E-mail address



Education 【 display / non-display

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    1988

    The University of Tokyo   Chemistry   Master Course   Completed

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    1986

    The University of Tokyo   Department of Chemistry   Graduated

Degree 【 display / non-display

  • Doctor of Science - The University of Tokyo

Campus Career 【 display / non-display

  • 2015.12
     
     

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

  • 2007.4
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    2015.11

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

  • 2006.4
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    2007.3

    Duty   Yokohama National UniversityFaculty of Engineering   Associate Professor  

  • 2001.4
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    2006.3

    Duty   Yokohama National UniversityResearch Institute of Environment and Information Sciences   Associate Professor  

  • 1995.4
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    2001.3

    Duty   Yokohama National UniversityInstitute of Environmental Sciences and Technology   Associate Professor  

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External Career 【 display / non-display

  • 2005.4
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    2005.6

    L'École Normale Supérieure de Lyon   Laboratoire de Chimie   professeur invité  

Academic Society Affiliations 【 display / non-display

  • 1987
     
     
     

    日本化学会

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    触媒学会

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    ゼオライト学会

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    Electrochemical Society of Japan

Research Areas 【 display / non-display

  • Nanotechnology/Materials / Green sustainable chemistry and environmental chemistry

  • Nanotechnology/Materials / Functional solid state chemistry

 

Research Career 【 display / non-display

  • 環境材料の開発と分光法によるキャラクタリゼーションおよび界面反応機構

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  • Study on novel inorganic materials

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  • Study on heterogeneous reactions in environment

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  • Study on Solid State Catalysis

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Books 【 display / non-display

  • ナノ空間材料ハンドブック

    有賀克彦他多数( Role: Joint author ,  pp.86-pp.95 第1章 9節「有機分子や無機イオンの吸着におけるナノ空間構造の効果」を単独で執筆。)

    エヌ・ティー・エス  ( ISBN:9784860434335

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    Language:Japanese Book type:Scholarly book

    ナノ多孔性材料、ナノ層状物質等が切り開く新たな展開を本邦の先導的な研究者が基礎から説き起こし、解説した。基礎的な化学から応用技術に至るまで内容は多岐にわたる。関連分野の研究者、技術者、大学院生を読者として想定、それぞれの研究を手がける著者が、丁寧に記した。
    担当部分では、メソ細孔性のシリカを骨格とした固体吸着剤の合成方法、構造と吸着特性の関係を分析方法の解説と共に詳説した。環境科学や技術を念頭におき、特に低濃度毒性イオンの吸着、有機異性体分子の選択吸着を主題に表面の機能を解説した。

  • Environmental Applications of Nanomaterials, Synthesis, Sorbents and Sensors, 2 nd Edition

    G. E. Fryxell, B. Cao et al.( Role: Joint author ,  "Functionalization of Periodic Mesoporous Silica and Its Application to the Adsorption of Toxic Anions" Chapter 11)

    Imperial College Press 

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    Language:English Book type:Scholarly book

  • 触媒調製ハンドブック

    岩本正和 他( Role: Joint author ,  メソポーラスチタニアの合成 第3編第2章22節)

    エヌ・ティー・エス 

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    Language:Japanese Book type:Scholarly book

  • ミクロおよびメソスケールで設計された毒性オキシアニオンの吸着媒

    有賀克也他( Role: Joint author ,  第6章9節)

    フロンティア出版 

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    Language:Japanese Book type:Scholarly book

  • Functionalization of Periodic Mesoporous Silica and its Application to the Adsorption of Toxic Anions.

    ( Role: Sole author)

    G. E. Fryxell and B. Cao ed. Environmental Applications of Nanomaterials, Chapter 10 

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    Language:English Book type:Scholarly book

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Papers 【 display / non-display

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Review Papers 【 display / non-display

  • Enhanced selectivities in adsorptions of inorganic ions and organic molecules on functionalization of the surfaces of mesoporous silicas.

    Taiyo Kodate, Keigo Sato, Hideaki Yoshitake

    Advanced Porous Materials   1 ( 4 )   323 - 336   2013.12  [Reviewed]  [Invited]

    DOI

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

  • 構造規則性メソポーラスチタニアの合成、構造、応用

    吉武英昭

    ゼオライト   ( 29(1) )   2 - 8   2012

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

  • Highly-controlled synthesis of organic layers on mesoporous silica: their structure and application to toxic ion adsorptions.

    New Journal of Chemistry   29 ( 9 )   1107 – 1117   2005.9

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

  • メソポーラス有機―無機ハイブリッド物質:規則性原子配列を持つメソ細孔壁とミクロ―メソ領域の構造階層性

    ゼオライト   19   61   2002

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

  • 電解中の電極表面のin-situ評価法

    横浜国立大学環境科学研究センター紀要   23   93 - 97   1997

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    Language:Japanese   Publishing type:Article, review, commentary, editorial, etc. (bulletin of university, research institution)   Single Work  

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Awards 【 display / non-display

  • 2020年度化学普及活動功労者表彰

    2021.3   公益社団法人日本化学会   化学グランプリを通じた化学の普及活動に対する貢献

    Individual or group name of awards:吉武 英昭

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

  • ミセル頭部の高密度性と選択性を利用した構造転写による二次元官能基場の創生

    2018.4 - 2021.3

    科学研究費補助金  Grant-in-Aid for Scientific Research(C)

    Investigator(s):吉武英昭

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    Grant type:Competitive

    鎖状高分子には吸着点、反応点、活性点となる官能基を高密度に導入できるが、分子鎖が凝集し、多くの官能基が露出しにくい。高密度と全露出を共に実現するためには、①官能基鎖の運動自由度、内部自由度の抑制、②固い骨格構造、③メソ構造規則性の3点が必要となる。本研究では湿式シリカ調製において、メソ構造を誘導する界面活性剤ミセルの頭部と官能基を有するシランを選択結合させ、さらにシリカ前駆体と共に縮合させる。これにより官能基は生成固体の表面に分布する。ミセル―シラン間相互作用の選択により、官能基の位置が制御できるので、この縮合法を官能基の分布制御に用い、吸着点三次元配置による超高容量吸着媒の実現、内部運動の制限による配位制御とゲストイオンの輸送促進、多元触媒表面上の異種活性点の高密度化を可能にする。

Presentations 【 display / non-display

  • New Porous and Layered Materials for the Removal of Aqueous Pollutants

    Hideaki Yoshitake, Keisuke Fukuda  [Invited]

    ICEAN 2018 

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    Event date: 2018.10

    Language:English   Presentation type:Oral presentation (general)  

    Venue:Newcastle, Australia  

  • Removal of Aqueous Pollutants using Mesostructured Organosilicates

    Hideaki Yoshitake

    Technoscape 18,6-8 September 2018,(Keynote lecture) 

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    Event date: 2018.9

    Language:English   Presentation type:Oral presentation (keynote)  

    Venue:Vellore, India  

  • Removal of Aqueous Pollutants using Mesostructured Solids

    Hideaki Yoshitake  [Invited]

    HITS-YNU International Symposium on"State-of-the-art Technologies and Market in Waste Water Treatment in India"  

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    Event date: 2018.9

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

    Venue:Chennai, India  

  • Reactions of α-, β-unsaturated aldehydes with alcohols on nanostructured oxide-supported gold catalysts

    Hideaki Yoshitake  [Invited]

    9th International Conference on Materials for Advanced Technologies  MRS

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    Event date: 2017.6

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

    Venue:Suntec,SIngapore  

  • Polymerization of silica nanoparticles into mesoporous solids.

    Hideaki Yoshitake

    Polymerization of silica nanoparticles into mesoporous solids. 18th International Zeolite Conference, (IZC18) 

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    Event date: 2016.6

    Language:The in addition, foreign language   Presentation type:Oral presentation (invited, special)  

    Venue:Rio de Janeiro, Brazil  

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Past of Collaboration and Commissioned Research 【 display / non-display

  • Control of the distance between organic chains by molecular probes on mesostructured porous silicas: applications to catalysis and selective adsorption of ions (with l'Ecole Normale Superieure de Lyon, France)

    International Cooperative Research  

    Project Year: 2005.2  -  2007.1 

  • Structure of mesoporous carbons

    Cooperative Research within Japan  

    Project Year: 2004.1  -  2004.12 

  • Chemical modification of mesoporous organosilica

    Others  

    Project Year: 2002  -  2005 

  • 高エネルギー加速器研究機構放射光利用共同実験

    Cooperative Research within Japan  

    Project Year: 1999  -  2005 

 

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

  • 2024   Exercise in Advanced Energy Creation F

    Graduate school of Engineering Science

  • 2024   Exercise in Advanced Energy Creation S

    Graduate school of Engineering Science

  • 2024   Exercise in Technology for Energy Creation F

    Graduate school of Engineering Science

  • 2024   Exercise in Technology for Energy Creation S

    Graduate school of Engineering Science

  • 2024   Exercise in Analysis for Energy Creation F

    Graduate school of Engineering Science

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Committee Memberships 【 display / non-display

  • グランプリ小委員会

    2019.12 - 2020.12  委員長

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    Committee type:Academic society 

  • 化学グランプリ・オリンピック委員会

    2020.1 - 2021.1  幹事

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    Committee type:Academic society 

Social Contribution(Extension lecture) 【 display / non-display

  • International Symposium on Zeolites and Microporous Crystals

    2012.8