Research field (3):
Organic functional materials
, Bioorganic chemistry
, Structural/physical organic chemistry
Research theme for competitive and other funds (2):
2021 - 2023 Two-Dimensionally Expanded pi-Systems for High-Performance Tin Perovskite Solar Cells
2019 - 2021 Emissive Perovskite Materials for Blue Electroluminescence Devices
Papers (48):
Wenchao Dai, Dong Xue, Haru Kimata, Xiangtao Zou, Tomoya Nakamura, Atsushi Wakamiya, Kazuhiro Marumoto. Performance Improvement Mechanism of Perovskite Solar Cells by Device Interface Control. Solar RRL. 2025
Shota Hira, Minh Anh Truong, Yuko Matsushige, Yasuko Iwasaki, Richard Murdey, Tomoya Nakamura, Takumi Yamada, Yoshihiko Kanemitsu, Atsushi Wakamiya. Squaric Acid-Containing Hole-Collecting Monolayer Materials for p-i-n Perovskite Solar Cells. ACS Applied Materials & Interfaces. 2025
Yuki Miyake, Tomoya Nakamura, Minh Anh Truong, Richard Murdey, Atsushi Wakamiya. Thiazolidinone-Based Electron-Collecting Monolayers for n-i-p Perovskite Solar Cells. Chemistry - An Asian Journal. 2025
Minh Anh Truong, Tsukasa Funasaki, Yuta Adachi, Shota Hira, Tiancheng Tan, Aruto Akatsuka, Takumi Yamada, Yasuko Iwasaki, Yuko Matsushige, Ryuji Kaneko, et al. Molecular Design of Hole-Collecting Materials for Co-Deposition Processed Perovskite Solar Cells: A Tripodal Triazatruxene Derivative with Carboxylic Acid Groups. Journal of the American Chemical Society. 2025
Tomoya Nakamura, Takabumi Nagai, Yuki Miyake, Takumi Yamada, Makoto Miura, Hiroyuki Yoshida, Yoshihiko Kanemitsu, MInh Anh Truong, Richard Murdey, Atsushi Wakamiya. Single-isomer bis(pyrrolidino)fullerenes as electron-transporting materials for tin halide perovskite solar cells. Chemical Science. 2025
Development of Isotriazatruxene Derivatives as Hole-Collecting Monolayer Materials for Perovskite Solar Cells (イソトリアザトルキセン誘導体を用いた正孔回収単分子膜材料の開発)
(日本化学会第104春期年会 2025)
ビオロゲン骨格を用いたカチオン性単分子電子回収材料
(日本化学会第104春期年会 2025)
イミド骨格をもつπ共役分子のアルキルアンモニウムを用いた 低次元ペロブスカイトの合成と物性
(第72回応用物理学会春季学術講演会(JSAP EXPO Spring 2024) 2025)
n-i-p型スズペロブスカイト太陽電池の高性能化に向けた酸化チタンの表面処理法の開発
(第72回応用物理学会春季学術講演会(JSAP EXPO Spring 2024) 2025)
チオール-イン反応による高分子構築に基づいたペロブスカイト太陽電池用正孔回収材料の開発
(第72回応用物理学会春季学術講演会(JSAP EXPO Spring 2024) 2025)
2016 - 2019 Kyoto University Graduate School of Engineering Department of Energy and Hydrocarbon Chemistry
2014 - 2016 The University of Tokyo School of Science Department of Chemistry
Work history (1):
2019/04 - 現在 Institute for Chemical Research, Kyoto University Assistant Professor
Awards (7):
2024/08 - The Japan Photovoltaic Society (JSES) The 21th Next Generation Photovoltaic Power Generation System Symposium, Innovative PV Encouragement Award Pyrrolidine-fused fullerenes as Electron Transport Materials for Tin Halide Perovskite Solar Cells
2024/06 - The 21st International Symposium on the Physics of Semiconductors and Applications (ISPSA 2024) Best Poster Presentation Award Bis(Pyrrolidino)Fullerenes as Electron Transport Materials for Tin Halide Perovskite Solar Cells
2023/06 - Japan Association for Chemical Innovation(JACI) The 12th Research Encouragement Award for Chemical Innovation Material Chemistry Approach for High-Performance Perovskite Tandem Solar Cells
2023/02 - The Society of Synthetic Organic Chemistry, Japan(SSOCJ) NIPPON SHOKUBAI Award in Synthetic Organic Chemistry Development of Monolayer Electron-Collecting Materials for Efficient Lead-Free Perovskite Solar Cells
2020/12 - The Institute for Chemical Research (ICR) , Kyoto University The 25th ICR, Kyoto University Incentive award