Kobayashi Rieko

Division of Materials and Environment(Department of Chemical Engineering)Assistant Professor
Last Updated :2026/07/04

■Researcher basic information

Researcher

  • Name

    Kobayashi Rieko

Profile and Settings

  • Name

    Kobayashi, Rieko

Affiliation

  • Graduate School of Science and Technology, Gunma University, Project Assistant Professor, Researcher postdoc lv

Education

  • Oct. 2017, Sep. 2020, Gunma University, Graduate School of Science and Technology
  • Apr. 2014, Sep. 2017, Tokyo Institute of Technology, Graduate School of Innovation Management
  • Apr. 2007, Mar. 2009, Tokyo Institute of Technology, Interdisciplinary Graduate School of Science and Engineering

Degree

  • Science and Technology

■Research activity information

Research Areas

  • Nanotechnology/Materials, Inorganic materials

Papers

  • Construction of Warped Graphitic Layers from Fullerene Soot and Study of Their Catalytic Oxygen Reduction Activity, Rieko Kobayashi; Takafumi Ishii; Jun-ichi Ozaki, 19 Dec. 2023, The Journal of Physical Chemistry C, 127, 51, 24564, 24573, Scientific journal
  • Modulation of the electronic state of carbon thin films by inorganic substrates, Takafumi Ishii; Daichi Okuhara; Rieko Kobayashi; Jun ichi Ozaki, 30 Aug. 2022, Carbon, 196, 313, 319, Scientific journal
  • Synthesis of P- and N-doped carbon catalysts for the oxygen reduction reaction via controlled phosphoric acid treatment of folic acid, Rieko Kobayashi; Takafumi Ishii; Yasuo Imashiro; Jun Ichi Ozaki, 2019, Beilstein Journal of Nanotechnology, 10, 1497, 1510, Scientific journal
  • Warped graphitic layers generated by oxidation of fullerene extraction residue and its oxygen reduction catalytic activity, Machiko Takigami; Rieko Kobayashi; Takafumi Ishii; Yasuo Imashiro; Jun Ichi Ozaki, 2019, Beilstein Journal of Nanotechnology, 10, 1391, 1400, Scientific journal
  • Dispersibility in organic solvents of nanosized silica particles used in semiconductor package substrates, Yoshihiro Nakamura; Rieko Kobayashi; Masayoshi Matsui; Jun-ichi Ozaki, Dec. 2009, CHEMICAL ENGINEERING JOURNAL, 155, 1-2, 493, 498, Scientific journal
  • Novel N-Doped Carbon Cathode Catalyst for Polymer Electrolyte Membrane Fuel Cells Formed on Carbon Black, Rieko Kobayashi; Jun-ichi Ozaki, May 2009, CHEMISTRY LETTERS, 38, 5, 396, 397, Scientific journal

Misc.

  • 2023, 23, 2, 45, 48
  • Chemical modification of carbon edge site toward enhancing the oxidation resistance of carbon materials, 矢野愛佳; 石井孝文; 小林里江子; 小林里江子; 尾崎純一, 2022, 炭素材料学会年会要旨集(Web), 49th
  • Electrochemical evaluation of fuel cell cathode catalysts at high temperatures and pressures, 森田蒼生; 石井孝文; 小林里江子; 小林里江子; 尾崎純一, 2022, 炭素材料学会年会要旨集(Web), 49th
  • Properties of metal oxide core-shell carbons and its effect as a catalyst support, 石井孝文; 宮下峻; 長島日向子; 関川あかね; 奥原大地; 小林里江子; 小林里江子; 尾崎純一, 2022, 炭素材料学会年会要旨集(Web), 49th
  • Formation of warped graphitic layers assisted by metal chlorides and their characterization, 大野貴嗣; 小林里江子; 小林里江子; 石井孝文; 尾崎純一, 2022, 炭素材料学会年会要旨集(Web), 49th
  • Influences of carbonization atmosphere on the development of graphitic layers from several polymers, 石井美帆; 小林里江子; 小林里江子; 石井孝文; 尾崎純一, 2022, 炭素材料学会年会要旨集(Web), 49th
  • Influence of heteroatom-doped carbon on the formation of tungsten carbide catalyst for hydrogen evolution reaction, 熊井戸椋大; 小林里江子; 小林里江子; 石井孝文; 今城靖雄; 今城靖雄; 尾崎純一, 2020, 炭素材料学会年会要旨集(Web), 47th
  • Improving the durability of carbon alloy catalyst by compounding with oxygen evolution reaction catalysts., 萩原健太; 小林里江子; 小林里江子; 石井孝文; 今城靖雄; 尾崎純一, 2020, 炭素材料学会年会要旨集(Web), 47th
  • Dec. 2018, 60, 6, 319, 325
  • 2015, 42nd
  • 2015, 42nd
  • 2014, 41st
  • 2014, 41st
  • 2013, 40th
  • 2013, 256, 82, 84
  • 2010, 37th
  • 2008, 75th
  • 2008, 75th
  • 2008, 35th
  • 2008, 35th
  • 2008, 35th
  • 2007, 34th

Books and Other publications

  • Joint work, Oct. 2017, xvi, 386p, 9784905507222

Presentations

  • 30 Nov. 2023
  • Dec. 2022
  • Dec. 2022
  • Dec. 2022
  • Dec. 2022
  • Dec. 2022
  • Dec. 2022
  • Dec. 2022
  • Dec. 2021
  • Dec. 2021
  • Dec. 2020
  • Dec. 2020
  • Dec. 2019
  • Dec. 2018
  • Dec. 2018
  • Dec. 2017
  • Dec. 2017
  • Dec. 2017
  • Dec. 2016

Industrial Property Rights

  • Patent right, 特願2016-236828, 06 Dec. 2016, ; , 特開2018-089591, 14 Jun. 2018, 特許第6857878号, 25 Mar. 2021
  • Patent right, 特願2016-562447, 30 Nov. 2015, ; , 特許第6738737号, 22 Jul. 2020
  • Patent right, 特願2015-138774, 10 Jul. 2015, ; ; , 特開2017-019693, 26 Jan. 2017, 特許第6572033号, 16 Aug. 2019
  • Patent right, 特願2016-236828, 06 Dec. 2016, ; , 特開2018-089591, 14 Jun. 2018
  • Patent right, 特願2015-138774, 10 Jul. 2015, ; ; , 特開2017-019693, 26 Jan. 2017
  • Patent right, JP2015083612, 30 Nov. 2015, ; , WO2016-088715, 09 Jun. 2016
  • Patent right, 特願2011-257842, 25 Nov. 2011, ; , 特開2013-111496, 10 Jun. 2013, 特許第5889613号, 26 Feb. 2016
  • Patent right, 特願2012-511668, 19 Apr. 2011, ; , 特許第5863645号, 08 Jan. 2016
  • Patent right, 特願2011-257849, 25 Nov. 2011, ; , 特開2013-113620, 10 Jun. 2013, 特許第5731960号, 17 Apr. 2015
  • Patent right, 特願2011-257849, 25 Nov. 2011, ; , 特開2013-113620, 10 Jun. 2013
  • Patent right, 特願2011-257842, 25 Nov. 2011, ; , 特開2013-111496, 10 Jun. 2013
  • Patent right, 特願2007-126873, 11 May 2007, 特開2008-282725, 20 Nov. 2008, 特許第5232999号, 05 Apr. 2013
  • Patent right, 特願2010-265334, 29 Nov. 2010, ; , 特開2012-115725, 21 Jun. 2012, 特許第5193274号, 08 Feb. 2013
  • Patent right, 特願2010-265334, 29 Nov. 2010, ; , 特開2012-115725, 21 Jun. 2012
  • Patent right, 特願2010-043196, 26 Feb. 2010, ; ; , 特開2011-178588, 15 Sep. 2011, 特許第4890623号, 22 Dec. 2011
  • Patent right, JP2011059631, 19 Apr. 2011, ; , WO2011-132676, 27 Oct. 2011
  • Patent right, 特願2010-043196, 26 Feb. 2010, ; ; , 特開2011-178588, 15 Sep. 2011
  • Patent right, 特願2009-128324, 27 May 2009, ; ; , 特開2010-275140, 09 Dec. 2010
  • Patent right, 特願2007-126873, 11 May 2007, 特開2008-282725, 20 Nov. 2008

Research Projects

  • Oct. 2023, Mar. 2025, Principal investigator, 23827280
  • 01 Apr. 2021, 31 Mar. 2024, 21K05142, kaken