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Watanabe Masashi  渡邊 真志

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WATANABE Masashi  渡邊 真志

渡辺 真志  ワタナベ マサシ

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Researcher Number 90301209
Other IDs
External Links
Affiliation (Current) 2025: 信州大学, 学術研究院繊維学系, 教授
Affiliation (based on the past Project Information) *help 2020 – 2022: 信州大学, 学術研究院繊維学系, 教授
2015: 信州大学, 学術研究院繊維学系, 教授
2015: 信州大学, 学術研究院繊維学部, 教授
2014: 信州大学, 学術研究院繊維学系, 准教授
2013: 信州大学, 繊維学部, 准教授 … More
2010: Shinshu University, 繊維学部, 准教授
2007 – 2009: Shinshu University, Faculty of Textile Science and Technology, Instructor
1999 – 2006: 信州大学, 繊維学部, 助手 Less
Review Section/Research Field
Principal Investigator
Electronic materials/Electric materials / Basic Section 35020:Polymer materials-related / Polymer/Textile materials / Microdevices/Nanodevices
Except Principal Investigator
Polymer/Textile materials / 高分子構造・物性(含繊維) / Science and Engineering
Keywords
Principal Investigator
座屈不安定性 / しわ / シワ / 人工筋肉 / 電歪 / アクチュエータ / ポリウレタン / 曲げ電歪 / 皺 / 針状結晶 … More / 有機半導体 / シリコーン / 薄膜 / 表面微細構造 / ゴム / LB膜 / 流路 / マイクロ化学チップ / マイクロリアクター / マイクロ化学システム / 空間電荷 / ポリピロール / 膜 / 電場 … More
Except Principal Investigator
エラストマー / 人工筋肉 / ポリ塩化ビニル / poly(vinyl chloride) / artificial muscle / 自律応答材料 / アクチュエータ / 電場駆動材料 / 可塑化 / ゲル / ポリウレタン / ポリビニルアルコール / actin / vibration / elastomer / gel / amoeba-like creep deformation / plasticized gel / 磁性流体 / ミオシン・アクチン / フタル酸系エステル可塑剤 / 可逆的クリープ変形 / アメーバ様偽足変形 / エラストマー・アクチュエータ / カーボン・ナノファイバー / 光応答材料 / 光学デバイス / クリープ変形 / アメーバ様変形 / 誘電性高分子 / 導電性高分子 / カーボンナノチューブ / 高分子ゲル / アメーバ様クリープ変形 / huge deformation / polyurethane / dimethyl sulphoxide / poly(vinyl alcohol) / electrostriction / Non-ionic polymer gel / 高速大変形自立応答材料 / Electrotactic Deformation / 人口筋肉 / ポリマーゲル / 機能性材料 / 可塑化ポリマー / 柔軟駆動材料 / 誘電ポリマー / 高速大変形 / 電場駆動 / 溶媒牽引 / 電荷注入 / 走電性 / 高速大変形材料 / 電歪現象 / エレクトロタクシス / 人工筋肉アクチュエータ / 屈曲変形 / イオンドラッグ / ジメチルスルホキシド Less
  • Research Projects

    (8 results)
  • Research Products

    (24 results)
  • Co-Researchers

    (3 People)
  •  Formation of aligned needle-like crystals using wrinkles in polymer filmsPrincipal Investigator

    • Principal Investigator
      Watanabe Masashi
    • Project Period (FY)
      2020 – 2022
    • Research Category
      Grant-in-Aid for Scientific Research (C)
    • Review Section
      Basic Section 35020:Polymer materials-related
    • Research Institution
      Shinshu University
  •  Langmuir-Blodgett films deposited on an elastic substrate and the wrinkles formed in these filmsPrincipal Investigator

    • Principal Investigator
      WATANABE Masashi
    • Project Period (FY)
      2013 – 2015
    • Research Category
      Grant-in-Aid for Scientific Research (C)
    • Research Field
      Polymer/Textile materials
    • Research Institution
      Shinshu University
  •  Easy Production of Original MicroreactorsPrincipal Investigator

    • Principal Investigator
      WATANABE Masashi
    • Project Period (FY)
      2007 – 2010
    • Research Category
      Grant-in-Aid for Scientific Research (C)
    • Research Field
      Microdevices/Nanodevices
    • Research Institution
      Shinshu University
  •  Electrically Induced Amoeba-like Dreformation of Organogels and Their Applications for Artificial Muscle and Devices

    • Principal Investigator
      HIRAI Toshihiro
    • Project Period (FY)
      2004 – 2007
    • Research Category
      Grant-in-Aid for Scientific Research (B)
    • Research Field
      Polymer/Textile materials
    • Research Institution
      Shinshu University
  •  非イオン性高分子柔軟材料の電場による高速大変形過程の分子シンクロナイゼーション

    • Principal Investigator
      HIRAI Toshihiro
    • Project Period (FY)
      2001 – 2002
    • Research Category
      Grant-in-Aid for Scientific Research on Priority Areas
    • Review Section
      Science and Engineering
    • Research Institution
      Shinshu University
  •  伸縮性ポリピロール電極を用いた高分子曲げ電歪アクチュエータPrincipal Investigator

    • Principal Investigator
      渡辺 真志
    • Project Period (FY)
      2001 – 2002
    • Research Category
      Grant-in-Aid for Young Scientists (B)
    • Research Field
      Electronic materials/Electric materials
    • Research Institution
      Shinshu University
  •  Motility of Artificial Muscle using Charge Injection -Solvent Drag by Applying an Electric Field

    • Principal Investigator
      HIRAI Toshihiro
    • Project Period (FY)
      2000 – 2003
    • Research Category
      Grant-in-Aid for Scientific Research (B)
    • Research Field
      高分子構造・物性(含繊維)
    • Research Institution
      Shinshu University
  •  ポリウレタンの曲げ電歪(機構の解明)Principal Investigator

    • Principal Investigator
      渡辺 真志
    • Project Period (FY)
      1999 – 2000
    • Research Category
      Grant-in-Aid for Encouragement of Young Scientists (A)
    • Research Field
      Electronic materials/Electric materials
    • Research Institution
      Shinshu University

All 2022 2016 2011 2010 2009 2008 2007 2005 2004 Other

All Journal Article

  • [Journal Article] Coil Formation of a Silicone String Using UV-Ozone Treatment2022

    • Author(s)
      Masashi Watanabe, Toshiki Tokutake, Ai Harada, and Masatoshi Kaminaga
    • Journal Title

      ACS Omega

      Volume: 7 Issue: 13 Pages: 11363-11370

    • DOI

      10.1021/acsomega.2c00475

    • Peer Reviewed / Open Access
    • Data Source
      KAKENHI-PROJECT-20K05630
  • [Journal Article] Spontaneous formation of discrete arrangement of particles by dipping ultraviolet/ozone-treated poly(dimethylsiloxane) substrate in solution2016

    • Author(s)
      Masashi Watanabe, Toshihiro Nishino
    • Journal Title

      Journal of Applied Polymer Science

      Volume: 133 Issue: 23

    • DOI

      10.1002/app.43506

    • Peer Reviewed / Acknowledgement Compliant
    • Data Source
      KAKENHI-PROJECT-25410223
  • [Journal Article] An inkjet-printed microfluidic device for liquid-liquid extraction2011

    • Author(s)
      M.Watanabe
    • Journal Title

      Analyst 136

      Pages: 1420-1424

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] An Inkjet-Printed Microfluidic Device for Liquid-Liquid Extraction2011

    • Author(s)
      Masashi Watanabe
    • Journal Title

      Analyst

      Volume: 136 Pages: 1420-1424

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Microfluidic Devices Easily Created Using an Office Inkjet Printer2010

    • Author(s)
      Masashi Watanabe
    • Journal Title

      Microfluidics and Nanofluidics Vol.8

      Pages: 403-408

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Microfluidic Devices Easily Created Using an Office Inkjet Printer2010

    • Author(s)
      Masashi Watanabe
    • Journal Title

      Microfluidics and Nanofluidics

      Volume: 8 Pages: 403-408

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Microfluidic Devices Easily Created Using an Office lnkjet Printer2010

    • Author(s)
      M.Watanabe
    • Journal Title

      MicroOuid.ManoIluid 8

      Pages: 403-408

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Formation of a Water-Xylene Interface in a Microchannel without Sidewalls2009

    • Author(s)
      Masashi Watanabe
    • Journal Title

      Analytical Chemistry 81

      Pages: 8213-8218

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Surface-Directed Channels Filled with Organic Solvents2009

    • Author(s)
      M.Watanabe
    • Journal Title

      Lab Chip 9

      Pages: 1143-1146

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Formation of a Water-Xylene Interface in a Microchannel without Sidewalls2009

    • Author(s)
      M.Watanabe
    • Journal Title

      Anal.Chern. 81

      Pages: 8213-8218

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Surface-directed channels filled with organic solvents2009

    • Author(s)
      Masashi Watanabe
    • Journal Title

      Lab on a Chip 9

      Pages: 1143-1146

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Surface-Directed Channels Filled with Organic Solvents2009

    • Author(s)
      Masashi Watanabe
    • Journal Title

      Lab on a Chip Vol.9

      Pages: 1143-1146

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Formation of a Water-Xylene Interface in a Microchannel without Sidewallss2009

    • Author(s)
      Masashi Watanabe
    • Journal Title

      Analytical Chemistry Vol.81

      Pages: 8213-8218

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Microchannels Constructed on Rough Hydrophobic Surfaces2008

    • Author(s)
      Masashi Watanabe
    • Journal Title

      Chemical Engineering and Technology 31

      Pages: 1196-1200

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Microchannels Constructed on Rough Hydrophobic Surfaces2008

    • Author(s)
      M.Watanabe
    • Journal Title

      Chem.Eng.Technol. 31

      Pages: 1196-1200

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Microchannels Constructed on Rough Hydrophobic Surfaces2008

    • Author(s)
      Masashi Watanabe
    • Journal Title

      Chemical Engineering and Technology Vol.31

      Pages: 1196-1200

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • [Journal Article] Behavior of bending motion of polyurethane film with carbon nanofiber as electrode2007

    • Author(s)
      T. Hirai, M. H. Islam, M. Takasaki, M. Watanabe
    • Journal Title

      J., Appl. Phys 101(5)

      Pages: 53533-53533

    • Description
      「研究成果報告書概要(欧文)」より
    • Data Source
      KAKENHI-PROJECT-16350123
  • [Journal Article] Behavior of bending motion of polyurethane film with carbon nanofiber as electrode2007

    • Author(s)
      T. Hirai, M. H. Islam, M. Takasaki, M. Watanabe
    • Journal Title

      J. Appl. Phys., 101(5), 053533(2007). 101

      Pages: 53533-53533

    • Description
      「研究成果報告書概要(和文)」より
    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-16350123
  • [Journal Article] Behavior of bending motion of polyurethane film with carbon nanofiber as electrode2007

    • Author(s)
      T.Hirai, M.H.Islam, M.Takasaki, M.Watanabe
    • Journal Title

      Journal of Applied Physics 101(5)

      Pages: 53533-53533

    • Data Source
      KAKENHI-PROJECT-16350123
  • [Journal Article] Thermal switching of the actuation ability of an electroactive actuator2005

    • Author(s)
      M. Watanabe, N. Wakimoto, M. Yokoyama, T. Hirai
    • Journal Title

      J. Appl. Polym. Sci. 95

      Pages: 1566-1570

    • Description
      「研究成果報告書概要(和文)」より
    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-16350123
  • [Journal Article] Bending-electrostrictive response of polyurethane films subjected to a reversed electric field2004

    • Author(s)
      M. Watanabe, T. Hirai
    • Journal Title

      J. Appl. Polym. Sci. 92

      Pages: 3644-3650

    • Description
      「研究成果報告書概要(和文)」より
    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-16350123
  • [Journal Article] Bending-electrostrictive response of polyurethane films subjected to a reversed electric field2004

    • Author(s)
      M.Watanabe, T.Hirai
    • Journal Title

      J.Appl.Polym.Sci. 92(6)

      Pages: 3644-3650

    • Data Source
      KAKENHI-PROJECT-16350123
  • [Journal Article] Polypyrrole film with stripped pattern2004

    • Author(s)
      M. Watanabe, T. Hirai
    • Journal Title

      J. Polym. Sci., Part B: Polym. Phys. 42

      Pages: 2460-2466

    • Description
      「研究成果報告書概要(和文)」より
    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-16350123
  • [Journal Article] She Tokunaga : Suitable properties of ink to create inkjet-printed surface-directed microchannels that utilize the pinning effect of a triple line on a rough surface

    • Author(s)
      Masashi Watanabe, Yu Eiwa
    • Journal Title

      Sens.Actuators B in press

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-19510128
  • 1.  HIRAI Toshihiro (30126700)
    # of Collaborated Projects: 3 results
    # of Collaborated Products: 7 results
  • 2.  HAMADA Kunihiro (30208582)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 0 results
  • 3.  FUJII Toshihiro (50126702)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 0 results

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