OYAIZU, Kenichi

J-GLOBAL         Last updated: Oct 10, 2019 at 02:49
OYAIZU, Kenichi
Waseda University
Faculty of Science and Engineering School of Advanced Science and Engineering
Job title
PhD(Waseda University)
Research funding number

Research Areas


Academic & Professional Experience

Apr 1992
Mar 1995
JSPS Research Associate (DC1)
Apr 1995
Mar 1997
Research Assistant, Department of Applied Chemistry, Waseda University
Apr 1997
Sep 2003
Lecturer, Advanced Research Institute for Science and Engineering, Waseda University
Oct 2003
Mar 2007
Associate Professor, Institute of Colloid and Interface Science, Tokyo University of Science
Apr 2007
Mar 2012
Associate Professor, Department of Applied Chemistry, Waseda University


Apr 1986
Mar 1990
Department of Applied Chemistry, Faculty of Science and Engineering, Waseda University
Apr 1990
Mar 1995
Department of Applied Chemistry, Graduate School, Division of Science and Engineering, Waseda University

Awards & Honors

Apr 2013
Prizes for Science and Technology, The Commendation for Science and Technology by the Minister of Education, Culture, Sports, Science and Technology
Mar 2002
Chemical Society of Japqan Award for Young Chemists
May 2001
Award for Encouragement of Research in Polymer Science; The Society of Polymer Science, Japan

Published Papers

K. Oka, C. Strietzel, R. Emanuelsson, H. Nishide, K. Oyaizu, M. Strømme, M. Sjödin
Electrochem. Commun.   105 106489   2019   [Refereed]
R. Kato, K. Oka, K. Yoshimasa, M. Nakajima, H. Nishide, K. Oyaizu
Macromol. Rapid Commun.   2019 1900139   2019   [Refereed]
K. Hatakeyama-Sato, R. Ichinoi, Y. Sasada, Y. Sasaki, K. Oyaizu, H. Nishide
Chem. Lett.   48 555-557   2019   [Refereed]
W. Okada, T. Suga, K. Oyaizu, H. Segawa, H. Nishide
ACS Appl. Energy Mater.   2 2848-2853   2019   [Refereed]
S. Perticarari, E. Grange, T. Doizy, E. Quarez, K. Oyaizu, D. Guyomard, P. Poizot, F. Odobel, J. Gaubicher
Chem. Mater.   31 1869-1880   2019   [Refereed]

Books etc

“Redox-active Polymers as an Organic Energy Storage Material”, Handbook of Conducting Polymers
K. Oyaizu, H. Nishide
CRC Press/Taylor & Francis   2019   
“レドックスポリマー微粒子を活物質として用いたレドックスフロー電池” 『レドックスフロー電池の開発動向』
シーエムシー出版   2017   ISBN:978-4-7813-1262-0
“高分子ラジカル電池”, 『スピン化学が拓く分子磁性の新展開』, CSJカレントレビュー
西出宏之, 小柳津研一
化学同人   2014   ISBN:978-4-7598-1376-0
“有機ラジカル電池” 『最先端電池と材料』, 最先端材料システムワンポイントシリーズ
小柳津研一, 西出宏之
共立出版   2012   ISBN:978-4-320-04429-6
“Polyradicals in Batteries”, Encyclopedia of Radicals in Chemistry, Biology and Materials, ed by C. Chatgilialoglu, A. Studer
K. Oyaizu, H. Nishide
Wiley   2012   ISBN:978-0-470-97125-3

Conference Activities & Talks

Polymers for Energy Storage
POLYCHAR 21, World Forum on Advanced Materials   13 Mar 2013   
Radical Molecules as Highly Reactive Mediators for Dye-Sensitized Solar Cell
The Third International Organic Excitonic Solar Cell Conference (IOESC2012)   4 Sep 2012   
Polymers for Energy Storage Ecomaterials
The 1st International Symposium on Polymer Ecomaterials (PEM 2012)   22 Aug 2012   
Polymers for Energy Storage Materials
HPI-APA International Conference on Innovation in Polymer Science and Technology (IPST 2011)   28 Nov 2011   
High-Density Redox Polymers for Energy Conversion and Storage
XIX Mendeleev Congress on General and Applied Chemistry   27 Sep 2011   

Research Grants & Projects

Development of High-density Redox Fluid for Charge Storage
Project Year: Jun 2018 - Mar 2021
Development of Energy Conversion Materials Based on Bistability of Polymers
Project Year: Apr 2017 - Mar 2022
Synthesis of Pure and High Molecular-weight Poly(phenylene sulfide) Derivatives and Development of Their Functionality
Project Year: Apr 2016 - Mar 2018
Polymerization of diphenyl disulfide (PhSSPh) proceeded in the presence of vanadyl complexes to catalyze the oxidation of PhSSPh with oxygen. Because water decomposed the active form of the catalyst, pricy strong acid anhydrides have been regarded...
Aromatic Ketone Polymers for A Hydrogen Career
Project Year: Apr 2015 - Mar 2017
We have proposed aromatic ketone polymers as a new class of hydrogen careers and elucidated their hydrogen storage property. The fluorenone polymers were synthesized, and highly efficient hydrogenation of the polymers was examined through the elec...


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