Rchr
J-GLOBAL ID:201701003525500020   Update date: Feb. 28, 2024

Iwase Kazuyuki

イワセ カズユキ | Iwase Kazuyuki
Affiliation and department:
Job title: Senior Assistant Professor
Homepage URL  (2): https://sites.google.com/view/kaz-web/homehttps://sites.google.com/view/kaz-web/english
Research field  (1): Basic physical chemistry
Research keywords  (5): 二酸化炭素電解 ,  Nanostructures ,  Oxygen reduction ,  Electrocatalysis ,  Electrochemistry
Research theme for competitive and other funds  (17):
  • 2023 - 2027 オペランド放射光測定とナノ材料精密合成の連携による高活性CO2還元電極触媒の開発
  • 2023 - 2027 触媒から電極構造の一貫制御による高効率 電気化学的二酸化炭素変換
  • 2023 - 2025 グリーン水素製造に向けたハイエントロピー触媒精密合成のためのプロセスインフォマティクス
  • 2022 - 2025 Development of highly selective copper-based CO2 electro-reduction catalysts for multi-electron reduction products and their design strategy
  • 2023 - 2025 基質及びプロトン輸送の制御による高活性二酸化炭素還元触媒の創成
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Papers (28):
  • Yoshinobu Utagawa, Kosuke Ino, Kaoru Hiramoto, Kazuyuki Iwase, Yuji Nashimoto, Itaru Honma, Hitoshi Shiku. Vasculature-on-a-Chip with a Porous Membrane Electrode for In Situ Electrochemical Detection of Nitric Oxide Released from Endothelial Cells. Analytical Chemistry. 2023. 95. 49. 18158-18165
  • Kazuyuki Iwase, Masaki Ohtaka, Itaru Honma. Rational Strategy for Tuning Electrocatalytic Oxygen Evolution Activity of Perovskite Oxides via Low-Temperature Fluorination. Chemistry of Materials. 2023. 35. 7. 2773-2781
  • Shintaro Kato, Takuya Hashimoto, Kazuyuki Iwase, Takashi Harada, Shuji Nakanishi, Kazuhide Kamiya. Selective and High-Rate CO2 Electroreduction by Metal-Doped Covalent Triazine Frameworks: A Computational and Experimental Hybrid Approach. Chemical Science. 2023. 14. 3. 613-620
  • Kazuyuki Iwase, Itaru Honma. High-entropy spinel oxide nanoparticles synthesized via supercritical hydrothermal processing as oxygen evolution electrocatalysts. ACS applied energy materials. 2022. 5. 8. 9292-9296
  • Kaoru Hiramoto, Kazuyuki Iwase, Yoshinobu Utagawa, Yuji Nashimoto, Itaru Honma, Kosuke Ino, Hitoshi Shiku. Electrochemical microwell sensor with Fe-N co-doped carbon catalyst to monitor nitric oxide release from endothelial cell spheroids. Analytical sciences. 2022
more...
MISC (3):
  • 岩瀬和至. 高耐久性CO2 電解電極の設計指針. 月間 化学. 2023. 78. 1. 63-64
  • Kazuyuki IWASE, Shuji NAKANISHI, Kazuhide KAMIYA. Rational Design and Development of Electrocatalysts for Selective CO2 Reduction Reactions. Catalysts & Catalysis. 2021. 63. 6. 349-354
  • Kazuyuki IWASE. Short stay for research at Paul Scherrer Institut. Denki Kagaku. 2021. 89. 4. 396-396
Lectures and oral presentations  (80):
  • 酸素発生反応電極触媒としてのハイエントロピースピネル酸化物ナノ粒子の開発とその反応メカニズムの解析
    (日本化学会第104春季年会(2024) 2024)
  • 高温・高圧水環境の適用による電気化学的CO2還元プロセスの高効率化
    (電気化学会第91回大会 2024)
  • リチウム酸素二次電池における正極上放電生成物の放電電圧領域における溶解挙動
    (電気化学会第91回大会 2024)
  • 金担持ガス拡散電極の開発とそのCO2還元特性
    (電気化学会第91回大会 2024)
  • 新規無機ナノ材料の開発と二酸化炭素還元電極触媒への応用
    (電気化学会第91回大会 2024)
more...
Education (1):
  • 2015 - 2018 The University of Tokyo School of engineering Department of Applied Chemistry
Professional career (1):
  • Doctor of Engineering (The University of Tokyo)
Work history (8):
  • 2023/04 - 現在 Tohoku University Institute of Multidisciplinary Research for Advanced Materials Senior Assistant Professor
  • 2019/05 - 現在 Osaka University Research Center for Solar Energy Chemistry Visiting Researcher
  • 2022/04 - 2023/03 東北大学 プロミネントリサーチフェロー
  • 2019/04 - 2023/03 Institute of Multidisciplinary Research for Advanced Materials, Tohoku University Chemistry of Energy Conversion Devices, Center for Mineral Processing and Metallurgy Assistant professor
  • 2018/10 - 2019/03 Osaka University Research Center for Solar Energy Chemitry Research Fellowships for Young Scientists (PD)
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Awards (4):
  • 2022/03 - 公益財団法人トーキン科学技術振興財団 令和三年度トーキン科学技術振興財団トーキン財団奨励賞 単原子金属中心を有する二酸化炭素還元触媒の開発と高活性化
  • 2021/12 - 東北大学多元物質科学研究所 籏野奨学基金 第16回多元物質科学研究奨励賞 多元系酸化物ナノ粒子からなる水分解触媒の開発
  • 2021/10 - The Core Research Clusters for Materials Science, The Core Research Clusters for Spintronics, and International Joint Graduate Program in Materials Science Poster Award Co-N doped Carbon with Different Co-speciation and Their Electrocatalytic activity for the Reduction of CO2 to CO
  • 2016/04 - The Chemical Society of Japan CSJ Student Presentation Award 2016
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