(24) J. Igarashi, Y. Ishizaki-Betchaku, S. Nagano, H. Ebe, J. Matsui*, K. Shunei, Orientation-Controlled In-Material Physical Reservoirs Based on Polymer-Wrapped Carbon Nanotube Nanofilms, Under Review.
(23) S. Tanaka, Y. Ishizaki-Betchaku*, K. Aoki, Y. Nagao, J. Matsui, T. Seki, S. Nagano*, Spatiotemporal photomodulation of proton transport in liquid crystalline copolymer thin films with sulfonic acid side chains, ChemPhotoChem 2026, Accepted.
(22) 石﨑 裕也, 高分子集合体におけるイオン輸送と表界面デザイン, 化学と工業 2026, 79, 196 (支部発話題欄).
(21) Y. Ishizaki-Betchaku*, M. Onishi, T. Misaka, M. Hara, H. Yano, H. Okuzaki, J. Matsui, T. Hasegawa, T. Matsumoto, H. Tanaka, S. Nagano*, Utilizing Cooperative Proton–Electron Mixed Conduction Induced via Chemical Dedoping of Self-Doped Poly(3,4-ethylenedioxythiophene) Nanofilms for In-Material Physical Reservoirs, Adv. Sci. 2026, 13, e20270.
立教大学プレスリリース:こちら
JSTプレスリリース:こちら
NanoWerk Spotlightで紹介されました:こちら
(20) M. Ohke, Y. Ishizaki-Betchaku, S. Nagano, H. Ebe, J. Matsui*, Fabrication of non-crosslinked poly(N-dodecyl acrylamide) monolayer-thick sheets by exfoliation using poor solvents, Polym. J 2026, 58, 269–276.
(19) M. Desu, A. Karacali, Y. Usami, Y. Ishizaki-Betchaku, S. Nagano, M. Xu, S. S. Pandey*, H. Tanaka*, Performance of In-Materio Physical Reservoir Computing Devices Based on Highly Oriented Semiconducting Polymer Thin Films, Jpn. J. Appl. Phys. 2025, 64, 04SP12.
(18) Y. Ishizaki-Betchaku*, S. Yamamoto, S. Nagano, M. Mitsuishi, Interfacial Bottom-up Fabrication of Ultrathin Nanoporous Films: Techniques, Characterization and Applications, Jpn. J. Appl. Phys. 2025, 64 030801. (Review article)
(17) Y. Ishizaki-Betchaku*, K. Suetsugu, M. Hara, Y. Nagao, J. Matsui, T. Seki, S. Nagano*, Reversible Photoswitching of Proton Conduction in Hetero-Smectic Lamellar Structures Formed by Side-Chain Liquid Crystalline Copolymer Thin Films, Polym. Int. 2024.
Early view: 10.1002/pi.6741
(16) Y. Koizumi, Y. Matsuo, A. Masuhara, H. Ebe, Y. Ishizaki-Betchaku, S. Nagano, J. Matsui*, Fabrication of Amorphous Lamellar Freestanding Poly(N-dodecyl acrylamide) Films and Their Mechanical Properties, Polym. Int. 2024.
Early view: 10.1002/pi.6718
(15) K. Ishibashi, T. Liu, Y. Ishizaki, S. Nagano, Y. Takahashi, A. Kumatani, H. Yabu*, Crystalline Formation Enhances Hydrogen Evolution Reaction Property of Copper Azaphthalocyanine on Carbon Electrodes, ACS Appl. Energy Mater. 2024, 7, 10466. (Supplementary Coverに採択)
(14) Y. Ishizaki-Betchaku*, N. Hara, T. Matsuda, J. Matsui, T. Seki, S. Nagano*, Formation of Conjugated Polymer Monolayer Networks on Water Surface and Nonlinear Charge Transport, Adv. Electron. Mater. 2024, 10, 2400427. (Inside Front Coverに採択, Open Access)
立教大学プレスリリース:こちら
(13) Y. Ishizaki-Betchaku*, N. Kumakura, S. Yamamoto*, S. Nagano, M. Mitsuishi*, Ultrathin Ionic Diodes with Electrostatically Heterogeneous Hybrid Interfaces with Nanoporous SiO2 Nanofilms and Polymer Layer-by-Layer Multilayers, Small, 2024, 20, 2404306. (Inside Front Coverに採択, Open Access)
(12) 石﨑 裕也
液晶研究をはじめて, 液晶, 2024, 28 (2), 165. (若手研究者紹介)
(11) 三ツ石 方也, 朱 慧娥, 石﨑 裕也, 山本 俊介, 松井 淳, 宮下 徳治, 機能性高分子ナノシートの構築:表面・界面での相互作用を中心として, 科学と工業, 2023, 98 (2), 42–48. (解説記事)
(10) S. Yamamoto*, R. Miyako, R. Maeda, Y. Ishizaki, M. Mitsuishi, Dip Coating of Water-Resistant PEDOT:PSS Films Based on Physical Crosslinking, Macromol. Mater. Eng., 2023, 308, 2300247. (Open Access) .
(9) M. S. Grewal, K. Ishibashi, M. Hara, Y. Ishizaki, S. Nagano, H. Yabu*, Effect of Polyethylene Glycol Diacrylate (PEGDA) Molecular Weight on Ionic Conductivities in Solvent-Free Photo-crosslinked Solid Polymer Electrolytes, Langmuir, 2023, 39, 10209–10215. (Supplementary Coverに採択)
(8) Y. Ishizaki, A. Watanabe, S. Yamamoto*, M. Mitsuishi*, Controlling Resistive Switching Modes of Ferrocene-Containing Polyelectrolyte Layer-by-Layer Nanofilms, ACS Appl. Electron. Mater., 2023, 5, 3957–3964. (Supplementary Coverに採択)
(7) 石﨑 裕也, ナノ流体を用いたイオンメモリスタ: 超低消費エネルギーで神経機能を模倣, 化学, 2023, 78, 58-59 (論文紹介).
(6) H. Zhu*, Y. Watanabe, N. Yoshida, Y. Ishizaki, M. Ohwada, R. Tang, M. Mitsuishi*, Facile synthesis of amine-substituted cyclosiloxanes via a photocatalytic thiol-ene reaction to generate ketoenamine-linked hybrid networks, Polym. J, 2022, 54, 1257-1265.
(5) 石﨑 裕也, 三ツ石 方也, 界面を利用した応答性の多孔質薄膜材料の設計, 化学, 2021, 76, 12-16 (解説記事).
(4) Y. Ishizaki, S. Yamamoto*, T. Miyashita, M. Mitsuishi*, pH-Responsive Ultrathin Nanoporous SiO2 Films for Selective Ion Permeation, Langmuir, 2021, 37, 5627-5634. (Supplementary Coverに採択)
東北大学プレスリリース:こちら
(3) Y. Ishizaki, S. Yamamoto*, T. Miyashita, M. Mitsuishi*, Controlled Ion Permeability of Ultrathin Nanoporous SiO2 Films from Silsesquioxane-Containing Polymer Nanosheets, ACS Appl. Nano Mater., 2020, 3, 7454-7461. (Supplementary Coverに採択)
(2) Y. Ishizaki, S. Yamamoto*, T. Miyashita, M. Mitsuishi*, Synthesis and Porous SiO2 Nanofilm Formation of the Silsesquioxane-Containing Amphiphilic Block Copolymer, Langmuir, 2018, 34, 8007-8014.
(1) Y. Ishizaki, H. Morinaga*, T. Takaoka, Metal-Free Ring-Opening Copolymerization of Glycidyl Methacrylate and Glycidyl Phenyl Ether Initiated with Tetra-n-Butylammonium Salts, 4th International Symposium on Technology for Sustainability (ISTS2014), Proc., 2014, 46, 1-4.