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J-GLOBAL ID:200901081526481087   Update date: Nov. 18, 2024

TSUTSUMI Jun’ya

ツツミ ジュンヤ | TSUTSUMI Jun’ya
Affiliation and department:
Job title: Group leader
Homepage URL  (2): https://unit.aist.go.jp/riaep/meso-matg/https://unit.aist.go.jp/riaep/en/overview.html
Research field  (3): Nanobioscience ,  Thin-film surfaces and interfaces ,  Applied materials
Research keywords  (5): Biosensor ,  Printed electronics ,  Flexible electronics ,  Organic electronics ,  Organic semiconductor
Research theme for competitive and other funds  (5):
  • 2022 - 2025 Development of label-free bioimaging technique for cellular status
  • 2019 - 2022 Development of label-free bioimaging technology using organic field-effect transistor
  • 2016 - 2019 Studies on ferroelectric molecular solids for piezoelectric functionalities
  • 2016 - 2019 High spatial resolution carrier imaging technology developed for the polycrystalline thin film device
  • 2012 - 2014 Development of photovoltaics utilizing charge-transfer exciton
Papers (58):
  • Keishi Sunami, Sachio Horiuchi, Shoji Ishibashi, Jun'ya Tsutsumi. Unveiling High Electro-Optic Performance in a Proton-π-Electron-Coupled Ferroelectric Crystal. Advanced Electronic Materials. 2024. 10. 2400346
  • Jun Kurosu, Takato Sakamaki, Kaname Kanai, Kana Morishita, Kimio Sumaru, Jun’ya Tsutsumi. Spatiotemporal dynamics of microscopic biological barrier visualized by electric-double-layer modulation imaging. Biosensors and Bioelectronics. 2024. 266. 116721-116721
  • Jun'ya Tsutsumi, Jun Kurosu, Kaname Kanai, Kingo Uchida, Kana Morishita, Kimio Sumaru. Visualization of invisible cell-death sign by electric-double-layer modulation. Biosensors and Bioelectronics: X. 2023. 14. 100390-100390
  • Jun'ya Tsutsumi. Label-free visualization of nano-thick biomolecular binding by electric-double-layer modulation. Sensors and Actuators B: Chemical. 2023
  • Jun'ya Tsutsumi. Growth and characterization of melem hydrate crystals with a hydrogen-bonded heptazine framework. Physical Chemistry Chemical Physics. 2022
more...
MISC (2):
  • 堤 潤也. 領域7,領域4,領域10「有機系熱電材料の探索: 電荷および熱輸送の新たな制御法を探して」(企画講演,2015年秋季大会招待・企画・チュートリアル講演の報告,学会報告). 日本物理學會誌. 2016. 71. 3. 182-182
  • 堤 潤也. 領域7,領域4,領域10「2次元原子層材料における新奇熱電物性の理論的研究」(企画講演,2015年秋季大会招待・企画・チュートリアル講演の報告,学会報告). 日本物理學會誌. 2016. 71. 3. 182-183
Patents (5):
Lectures and oral presentations  (168):
  • 電気二重層変調イメージング法を用いたヒト小腸上皮様細胞のタイトジャンクション開閉の観察
    (第71回応用物理学会春季学術講演会 2024)
  • 可視光領域における有機強誘電体結晶の電気光学特性
    (第71回応用物理学会春季学術講演会 2024)
  • 有機強誘電体クロコン酸結晶の電気光学特性の波長依存性
    (日本物理学会2024年春季大会 2024)
  • 複屈折変調イメージング法による有機強誘電体の局所電気光学特性評価
    (第84回応用物理学会秋季学術講演会 2023)
  • 電場変調イメージング法を用いた有機強誘電体の電気光学係数評価
    (日本物理学会第78回年次大会 2023)
more...
Education (1):
  • - 2009 Kyoto University Department of Chemistry, Graduate School of Science
Professional career (1):
  • Ph. D (Kyoto University)
Work history (10):
  • 2022/04 - 現在 Tokyo University of Science Department of Physics and Astronomy, Faculty of Science and Technology Guest professor
  • 2021/04 - 現在 National Institute of Advanced Industrial Science and Technology Research Institute for Advanced Electronics and Photonics (RIAEP) Group leader
  • 2020/04 - 2021/03 National Institute of Advanced Industrial Science and Technology Research Institute for Advanced Electronics and Photonics (RIAEP) Senior Researcher
  • 2019/04 - 2020/03 National Institute of Advanced Industrial Science and Technology Electronics and Photonics Research Institute (ESPRIT) Senior Researcher
  • 2016/10 - 2019/03 National Institute of Advanced Industrial Science and Technology (AIST) Flexible Electronics Research Center (FLEC) Senior Researcher
Show all
Committee career (1):
  • 2014/10 - 2015/09 日本物理学会 領域7運営委員
Awards (2):
  • 2015/10 - The Physical Society of Japan (JPS) Young scientist award of the Physical Society of Japan
  • 2014/01 - Materials Research Society of Japan (MRS-J) Award for encouragement of research in the 23th annual meeting of MRS-J
Association Membership(s) (2):
THE JAPAN SOCIETY OF APPLIED PHYSICS ,  THE PHYSICAL SOCIETY OF JAPAN
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