Rchr
J-GLOBAL ID:200901041380269771   Update date: Nov. 26, 2024

Naya Shin-ichi

ナヤ シンイチ | Naya Shin-ichi
Affiliation and department:
Research field  (2): Basic physical chemistry ,  Structural/physical organic chemistry
Research theme for competitive and other funds  (11):
  • 2024 - 2025 新奇酸素欠陥形成法による金ナノ粒子-再生可能シングルアトム協奏触媒の創製
  • 2023 - 2024 再生可能シングルアトム触媒電極による高効率二酸化炭素電解還元セルの創製
  • 2021 - 2024 アンチモンドープ酸化スズ電極を用いたアンモニウムイオンによる高濃度プロトン反応 場の形成と二酸化炭素還元電気化学セルへの応用
  • 2021 - 2024 Hole-induced plasmonic photocatalytic electrode for NIR-driven hydrogen generation
  • 2022 - 2023 ドーパント型シングルアトム触媒の創製と高効率過酸化水素電解合成
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Papers (107):
  • Hiroaki Tada, Shin-ichi Naya, Miwako Teranishi, Musashi Fujishima. Formic Acid Photo-Fuel Cells Consisting of TiO2 Photoanode and Pt Cathode. ChemPhysChem. 2024
  • Hiroaki Tada, Takumi Masuda, Shin-Ichi Naya, Hisashi Sugime, Senku Tanaka, Musashi Fujishima. Efficient Photon-to-Current and Hydrogen Conversion by Decomposition of Formic Acid on TiO2 Photoanode. The Journal of Physical Chemistry C. 2024. 128. 22. 9016-9023
  • Hiroaki Tada, Musashi Fujishima, Shin-ichi Naya. Fundamentals and Applications of Gold Nanoparticle-Based Plasmonic Photocatalysts for Water Purification. ACS ES&T Engineering. 2024. 4. 3. 506-524
  • Shin-ichi Naya, Mio Nagamitsu, Hisashi Sugime, Tetsuro Soejima, Hiroaki Tada. Metal oxide plating for maximizing the performance in ruthenium(IV) oxide-catalyzed electrochemical oxygen evolution reaction. Nanoscale. 2024
  • Shin-ichi Naya, Yoko Morita, Hisashi Sugime, Tetsuro Soejima, Musashi Fujishima, Hiroaki Tada. Efficient plasmonic water splitting by heteroepitaxial junction-induced faceting of gold nanoparticles on an anatase titanium(iv) oxide nanoplate array electrode. Nanoscale. 2024. 16. 28. 13435-13444
more...
MISC (14):
Books (2):
  • Light Harvesting Nanomaterials (Chapter 4. Visible-light Photocatalytic Organic Synthesis: Localized Surface Plasmon Resonance-Driven Oxidation Processes Using Au-TiO2 Nanocoupling Systems)
    Bentham Science Publishers 2015
  • Metal Oxide-Supported Gold Nanoparticles - Size -Dependence of Cataltyic Activities
    Lambert Academic Publishing, Germany 2012
Education (3):
  • 1998 - 2001 早稲田大学大学院 理工学研究科博士課程 化学専攻
  • 1996 - 1998 早稲田大学大学院 理工学研究科修士課程 化学専攻
  • 1992 - 1996 早稲田大学 理工学部 化学科
Professional career (1):
  • 博士(理学) (早稲田大学)
Awards (5):
  • 2024/10 - 色材協会 優秀講演賞 金ナノ粒子担持酸化チタンプラズモニック光電極による太陽光駆動型アンモニア分解
  • 2022/10 - Japan Society of Colour Material 95th JSCM Anniversary Conference President Award Noble Metal-Free Photocatalyst Consisting of Antimony-Doped Tin Oxide Nanorod and Titanium Oxide for Hydrogen Peroxide Production
  • 2021/09 - Japan Society of Colour Material Prize for excellent lecture NIR-photothermal effect of antimony-doped tin oxide nanocrystals with the surface modified by manganese oxide clusters on environmental catalysis
  • 2019/10 - 優秀講演賞 Photochemical synthesis of Au-Ag alloy nanoparticles in AgBr crystals and its application as a plasmonic photocatalyst
  • 2018/09 - 優秀講演賞 Hydrogen peroxide decomposition by gold(core)-platinum(shell) nanoparticle thermal catalyst loaded on titanium(IV) oxide
Association Membership(s) (6):
日本化学会 ,  電気化学会 ,  色材協会 ,  光機能材料研究会 ,  コロイド界面部会 ,  触媒討論会
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