Rchr
J-GLOBAL ID:201801012806723661   Update date: Sep. 25, 2024

Hasegawa Tatsuo

ハセガワ タツオ | Hasegawa Tatsuo
Affiliation and department:
Other affiliations (1):
  • 産業技術総合研究所  総括研究主幹
Research field  (1): Applied materials
Research theme for competitive and other funds  (22):
  • 2021 - 2025 Interface structure control for developing extremely sharp-switching organic semiconductors
  • 2018 - 2021 Development of all-printed and ultrafine TFT arrays based on highly layered-crystalline organic semiconductors
  • 2017 - 2019 先進印刷技術を用いた層状分子集積システム構築とπ電子機能の創出
  • 2016 - 2019 Studies on ferroelectric molecular solids for piezoelectric functionalities
  • 2016 - 2018 Development of production technologies for large-area and a few nanometer-thick organic single-crystalline insulating layer toward realizing quantum effect device
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Papers (223):
  • Keito Murata, Gyo Kitahara, Satoru Inoue, Toshiki Higashino, Satoshi Matsuoka, Shunto Arai, Reiji Kumai, Tatsuo Hasegawa. Stability of ternary interfaces and its effects on ideal switching characteristics in inverted coplanar organic transistors. Physical Review Applied. 2024. 21. 2
  • Satoru Inoue, Toshiki Higashino, Kiyoshi Nikaido, Ryo Miyata, Satoshi Matsuoka, Mutsuo Tanaka, Seiji Tsuzuki, Sachio Horiuchi, Ryusuke Kondo, Ryoko Sagayama, et al. Control of Polar/Antipolar Layered Organic Semiconductors by the Odd-Even Effect of Alkyl Chain. Advanced Science. 2024
  • Toshiki Higashino, Satoru Inoue, Shunto Arai, Seiji Tsuzuki, Hiroyuki Matsui, Reiji Kumai, Kiyofumi Takaba, Saori Maki-Yonekura, Hirofumi Kurokawa, Ichiro Inoue, et al. Effects of Thiophene-Fused Isomer on High-Layered Crystallinity in π-Extended and Alkylated Organic Semiconductors. Chemistry of Materials. 2024. 36. 2. 848-859
  • Hideaki Murase, Shunto Arai, Tatsuo Hasegawa, Kazuya Miyagawa, Kazushi Kanoda. Spatiotemporal observation of quantum crystallization of electrons. Nature Communications. 2023. 14. 1
  • Yudai Hemmi, Yuji Ikeda, Radu A. Sporea, Satoru Inoue, Tatsuo Hasegawa, Hiroyuki Matsui. Printed 700 V/V Gain Amplifiers Based on Organic Source-Gated Transistors with Field Plates. Advanced Electronic Materials. 2023
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MISC (73):
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Professional career (1):
  • 博士(工学) (東京大学)
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