Rchr
J-GLOBAL ID:202101017640086002   Update date: Sep. 23, 2024

HASEGAWA SHIN

ハセガワ シン | HASEGAWA SHIN
Research theme for competitive and other funds  (7):
  • 2020 - 2024 放射線グラフト重合による多機能型芳香族炭化水素高分子の開発
  • 2020 - 2023 放射線グラフト法による正浸透を自発する二層接合膜の創製とエタノール脱水への応用
  • 2016 - 2021 Development of permselective polymer membranes that distinguishes the property of gas molecules.
  • 2017 - 2018 Using Radiation Modification of Amorphous Phase in Semi-Crystalline Polymers To Develop Hydrogen Compatible Resins Used in High-Pressure Hydrogen
  • 2012 - 2015 Synthesis of block-type graft chains by radition-induced living graft polymerization and application of fuel cell membrane.
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Papers (35):
  • Shun Okushima, Shin Hasegawa, Toshihiro Kawakatsu, Yasunari Maekawa. Coarse-grained molecular dynamics simulation to reproduce phase-separated structures in graft-type polymer electrolyte membranes. Polymer. 2021. 230
  • Lam Hoang Hao, Tran Duy Tap, Dinh Tran Trong Hieu, Ekaterina Korneeva, Nguyen Van Tiep, Kimio Yoshimura, Shin Hasegawa, Shin-ichi Sawada, Tran Van Man, Nguyen Quang Hung, et al. Morphological characterization of grafted polymer electrolyte membranes at a surface layer for fuel cell application. Journal of Applied Polymer Science. 2021
  • Tran D. Tap, La L. Nguyen, Shin Hasegawa, Shin-ichi Sawada, Le Q. Luan, Yasunari Maekawa. Internal and interfacial structure analysis of graft-type fluorinated polymer electrolyte membranes by small-angle X-ray scattering in the high-q range. Journal of Applied Polymer Science. 2020. 137. 35
  • Shin Hasegawa, Akihiro Hiroki, Yuko Ohta, Nobuaki Iimura, Atsuko Fukaya, Yasunari Maekawa. Thermally stable graft-type polymer electrolyte membranes consisting based on poly (ether ether ketone) and crosslinked graft-polymers for fuel cell applications. Radiation Physics and Chemistry. 2020. 171
  • SHIN HASEGAWA, Shinichi Sawada, Shinya Azami, Tokio Hagiwara, Akihiro Hiroki, Yasunari Maekawa. Development of Hydrogen-Permselective Porous Membranes Using Radiation-Induced Graft Polymerization. Quantum Beam Science. 2020. 4. 2
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