Rchr
J-GLOBAL ID:201201022592442016
Update date: Dec. 24, 2025
Hasegawa George
Hasegawa George
Affiliation and department:
Homepage URL (1):
http://www.chembio.nagoya-u.ac.jp/labhp/solid3/
Research field (5):
Inorganic compounds/materials chemistry
, Inorganic materials
, Polymer materials
, Energy chemistry
, Inorganic compounds/materials chemistry
Research keywords (15):
Solid state ionics
, 高分子ゲル
, 自己組織化
, メソポーラス材料
, クロマトグラフィー
, イオン伝導
, 二次電池
, Electric Double-Layer Capacitor
, Li-ion Battery
, 相分離
, 多孔体
, Organic-Inorganic Hybrids
, Carbon Materials
, Electrodes
, Sol-Gel Process
Research theme for competitive and other funds (19):
- 2025 - 2029 Synthesis Route to Porous Ceramics via Phase Separation Induced by Thermal Conversion
- 2023 - 2028 資源制約フリーなナトリウムイオン電池の開発
- 2021 - 2028 分子設計と細孔構造制御によるハード柔軟多孔体の創出
- 2025 - 2027 Development of Novel Supra-Ceramics by Control over Particle Morphology and Porous Structure
- 2023 - 2025 酸化物系全固体ナトリウムイオン二次電池用ハードカーボン負極の開発
- 2023 - 2025 メソポーラス多面体粒子の超セラミックス化と機能開拓
- 2022 - 2025 Improved resilience and novel functions of low-density porous materials via cross-scale structural control
- 2019 - 2023 Creation of novel ionics devices by synergetic design of Na-conducting poly-anion compounds
- 2022 - 2023 Investigation of Ionic Conductivity of Pyrophosphate-based Electrodes for Rechargeable Sodium-ion Batteries
- 2020 - 2022 NASICON/カーボン共連続構造の創出と全固体蓄電デバイスへの展開
- 2020 - 2021 Investigation of Charge Transfer at NASICON-type Electrode/Solid Electrolyte Interfaces
- 2019 - 2021 熱分解に誘起されるセラミックス単結晶粒子の相分離
- 2018 - 2020 柔軟性を有する低密度ポリイミドキセロゲルの開発と断熱特性評価
- 2018 - 2020 階層的多孔構造を有するヘテロ原子ドープカーボン電極の開発
- 2016 - 2019 トップダウン製法による薄片状Siナノ粒子の高容量リチウムイオン電池負極への展開
- 2017 - 2018 形態制御したリン酸チタン化合物のイオン輸送・吸蔵特性評価
- 2014 - 2016 多孔性カーボンモノリスへのヘテロ原子の導入と新規電極材料への応用
- 2012 - 2015 多孔性無機材料の合成と次世代蓄電池デバイスへの展開
- 2010 - 2012 多孔性架橋高分子ゲルの作製とその炭素化
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Papers (84):
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Rintaro Suzuki, Suguru Iwai, Ryota Kirino, Kosuke Sato, Mariko Konishi, George Hasegawa, Norio Ishizuka, Kimihiro Matsukawa, Kazuo Tanaka, Elena Villani, et al. An electrochemiluminescence device powered by streaming potential for the detection of amines in flowing solution. NATURE COMMUNICATIONS. 2025. 16. 1
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Nbelayim, P., Lu, X., Mubiayi, P.K., Hasegawa, G., Moloto, N., Nakanishi, K. Facile synthesis of template-free 3D-connected hierarchically porous CaCu3Ti4O12 monolith by a green aqueous sol-gel method. Journal of Porous Materials. 2025. 32. 4. 1505-1517
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Hasegawa, G., Hattori, M., Nakanishi, K., Hayashi, K. Co-continuous hard Carbon/NASICON electrodes for all-solid-state batteries: Insights into structural stability and interfacial Na-ion transfer. Energy Storage Materials. 2025. 80
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Lu, Z.-T., Asaki, S., Yoshida, S., Moriyoshi, C., Hasegawa, G., Fujita, K., Gopalan, V., Hayashi, K., Akamatsu, H. Structural frustration effects by mixed alkali ions in ferroelectric Dion-Jacobson layered perovskites (Cs,Rb)NdNb2O7. Journal of Materials Chemistry C. 2025. 13. 4. 1812-1823
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Nbelayim, P., Kawamura, G., Kian, T.W., Ngubeni, G., Hasegawa, G., Onwona-Agyeman, B., Nakanishi, K., Moloto, N., Mubiayi, P.K., Matsuda, A. Preliminary studies on high potential narrow-bandgap Parkia biglobosa pod husk natural dye extracts for high-performance DSSCs. RSC Advances. 2025. 15. 31. 25115-25131
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MISC (13):
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長谷川 丈二. 熱分解に誘起される相分離を利用した多孔質セラミックス多面体粒子の作製. 粉体および粉末冶金. 2024. 71. 161-166
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長谷川 丈二. 熱分解に誘起される相分離を利用した多孔質マイエナイトの形態・細孔特性制御. Journal of the Society of Inorganic Materials, Japan. 2024. 31. 127-132
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長谷川 丈二. 相分離を用いたセラミックス多面体粒子の多孔質化. 化学と工業. 2024. 77. 295
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George Hasegawa. Hard & Flexible Porous Resins. 2023. 76. 9. 657
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長谷川 丈二. 相分離を用いた多孔質材料の開発および機能開拓. 東海化学工業会 会報. 2023. 319. 2-7
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Patents (5):
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放熱構造体とその製造方法
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ポリシロキサン多孔体とその製造方法
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低密度ゲル体とその製造方法
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Macroporous Titanium Compound Monolith and Method for Manufacturing Same
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カラム充填剤、カラム、及びカラムシステム
Books (10):
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Routledge Resources Online - Polymers, Polymeric Materials, and Polymer Technology
Routledge - Taylor & Francis Group 2025
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ゾル-ゲル法技術の最新動向
シーエムシー出版 2023
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炭素材料の研究開発動向 2022
CPC研究会 2022
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Encyclopedia of Polymer Science and Technology
Wiley-VCH 2021
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発泡樹脂、多孔性樹脂の高強度化と応用技術
技術情報協会 2018
more...
Lectures and oral presentations (38):
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Porous Polymer Monoliths with High Mechanical Strength and Flexibility
(2025 MRS Fall Meeting 2025)
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Imparting Flexibility to Porous Polysilsesquioxane Monoliths
(The 39th International Korea-Japan Seminar on Ceramics (K-J Ceramics 39) 2025)
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Microstructural Design of Hard Carbon/NASICON for All-Solid-State Na-ion Batteries
(76th Annual Meeting of the International Society of Electrochemistry 2025)
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Comparison of Hard Carbon Electrodes Derived from Phenolic Resins for Na-ion Batteries
(Carbon 2025 2025)
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Fabrication of Bicontinuous NASICON/Carbon Hybrid Monoliths for Energy Storage Application
(E-MRS 2025 Spring Meeting 2025)
more...
Education (3):
- 2009 - 2012 Kyoto University Graduate School of Science Department of Science (Ph. D.)
- 2007 - 2009 Kyoto University Graduate School of Science Department of Chemistry (MS)
- 2003 - 2007 Kyoto University
Professional career (1):
- Dr. (Science) (Kyoto University)
Work history (7):
- 2025/04 - 現在 九州大学大学院 工学研究院 客員准教授
- 2019/11 - 現在 Nagoya University Institute of Materials and Systems for Sustainability Associate Professor
- 2016/10 - 2019/10 Kyushu University Graduate School of Engineering Assistant Professor
- 2015/09 - 2016/09 Osaka University The Institute of Scientific and Industrial Research Assistant Professor
- 2015/04 - 2015/08 Kyoto University Graduate School of Science Postdoc
- 2012/04 - 2015/03 Graduate School of Engineering, Kyoto University Postdoctoral fellow
- 2010/04 - 2012/03 Graduate School of Science, Kyoto University
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Committee career (3):
- 2023/01 - 2024/12 炭素材料学会 運営委員
- 2023/01 - 2024/12 炭素材料学会 次世代の会 幹事長
- 2021/01 - 2022/12 炭素材料学会 次世代の会 副幹事長
Awards (7):
- 2023/05 - Tokai Chemical Industry Association Tokai Chemical Industry Association Award
- 2021/12 - 炭素材料学会・研究奨励賞
- 2021/10 - D. R. Ulrich Award
- 2020 - 日本セラミックス協会・進歩賞
- 2019 - The Motoharu Kurata Award
- 2013 - XVII International Sol-Gel Conference (Sol-Gel 2013) Best Poster Award
- 2012 - Springer Theses Award
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Association Membership(s) (6):
The Electrochemical Society of Japan
, THE CERAMIC SOCIETY OF JAPAN
, THE CARBON SOCIETY OF JAPAN
, 日本ゾル-ゲル学会
, The American Ceramic Society
, International Sol-Gel Society
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