• A
  • A
  • A
日本語 Help
Science and technology information site for articles, patents, researchers information, etc.
Rchr
J-GLOBAL ID:200901032481533802   Update date: Mar. 12, 2025

Kim Yousoo

キム ユウス | Kim Yousoo
Affiliation and department:
Job title: Chief Scientist
Homepage URL  (1): http://www.riken.jp/Kimlab/
Research field  (4): Thin-film surfaces and interfaces ,  Semiconductors, optical and atomic physics ,  Nanostructure physics ,  Nanostructure chemistry
Research keywords  (3): Nanospectroscopy ,  Scanning Probe Micrscopy ,  Surface and Interface Science
Research theme for competitive and other funds  (15):
  • 2023 - 2030 Creation of quantum molecular electronics by fusion of advanced materials chemistry a nd quantum solid-state physics
  • 2022 - 2027 Exploring molecular science by atomic-scale spectroscopy
  • 2022 - 2026 プラズモニック触媒反応の学理構築を目指した単一分子化学
  • 2020 - 2025 Molecular-scale elucidation of the reaction elementary processes on the model dust surfaces by single-molecule surface spectroscopy
  • 2020 - 2025 Development of Phase-Controlled Near Field Spectroscopy with Extremely High Spatiotemporal Resolution
Show all
Papers (277):
  • Kensuke Kimura, Ryo Tamaki, Minhui Lee, Xingmei Ouyang, Satoshi Kusaba, Rafael B. Jaculbia, Yoichi Kawada, Jaehoon Jung, Atsuya Muranaka, Hiroshi Imada, et al. Ultrafast on-demand exciton formation in a single-molecule junction by tailored terahertz pulses. Science. 2025. 387. 6738. 1077-1082
  • Yuzu Kobayashi, Yasuyuki Yokota, Yoshiaki Shoji, Sanjayan Sajisha, Colin J. Martin, Jun Takeya, Takanori Fukushima, Yousoo Kim. Fluorescence Detection of Tetraphenylporphyrin Isolated on the Au(111) Electrode Enabled by Tripodal Molecules. The Journal of Physical Chemistry C. 2024
  • Jaehyun Bae, Miyabi Imai-Imada, Hyung Suk Kim, Minhui Lee, Hiroshi Imada, Youichi Tsuchiya, Takuji Hatakeyama, Chihaya Adachi, Yousoo Kim. Visualization of Multiple-Resonance-Induced Frontier Molecular Orbitals in a Single Multiple-Resonance Thermally Activated Delayed Fluorescence Molecule. ACS Nano. 2024. 18. 27. 17987-17995
  • Emiko Kazuma, Minhui Lee, Jaehoon Jung, Michael Trenary, Yousoo Kim. Real-Space Observations of Multiple Reaction Pathways Enabled by Plasmonic Hot Carriers. The Journal of Physical Chemistry C. 2023
  • David L. Molina, Maki Inagaki, Emiko Kazuma, Yousoo Kim, Michael Trenary. Probing the Properties of Pt-Cu(111) Bimetallic Surfaces with Adsorbed CO. The Journal of Physical Chemistry C. 2023
more...
MISC (62):
  • STM/STS as an Inevitable Probe for Elucidating Local States of Molecules at Surfaces. 2017. 59. 2. 56-62
  • Holly Walen, Da-Jiang Liu, Junepyo Oh, Hyun Jin Yang, Yousoo Kim, Patricia A. Thiel. Inside Back Cover: Formation of Two-Dimensional Copper Selenide on Cu(111) at Very Low Selenium Coverage (ChemPhysChem 14/2016). ChemPhysChem. 2016. 17. 14. 2278
  • Yamamoto Shunji, Yoshida Yasuo, Imada Hiroshi, Kim Yousoo, Hasegawa Yukio. Direct Visualization of Surface Phase of Oxygen Molecules Physisorbed on the Ag(111) Surface: A Two-dimensional Quantum Spin System. Meeting Abstracts of the Physical Society of Japan. 2016. 71. 0. 942-942
  • Yamamoto Shunji, Imada Hiroshi, Yoshida Yasuo, Kim Yousoo, Hasegawa Yukio. 17aCA-2 Direct Visualization of Surface Phase of Oxygen Molecules Physisorbed on Ag(111) Surface. Meeting Abstracts of the Physical Society of Japan. 2015. 70. 0. 2262-2262
  • Yamamoto Shunji, Yoshida Yasuo, Imada Hiroshi, Kim Yousoo, Hasegawa Yukio. Direct Visualization of Surface Phase of Oxygen Molecules Physisorbed on Ag(111) Surface. Abstract of annual meeting of the Surface Science of Japan. 2015. 35. 0. 220-220
more...
Professional career (1):
  • Dr. Eng. (The University of Tokyo)
Work history (3):
  • 2020/11 - 現在 RIKEN Surface and Interface Science Laboratory Chief Scientist
  • 2015/04 - 現在 RIKEN Surface and Interface Science Laboratory Chief Scientist
  • 2010/01 - 2015/03 RIKEN Surface and Interface Science Laboratory Associate Chief Scientist
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page