Rchr
J-GLOBAL ID:200901056429987303
Update date: Oct. 19, 2024
HAYASE SHUZI
ハヤセ シュウジ | HAYASE SHUZI
Affiliation and department:
Job title:
Project Professor
Homepage URL (1):
http://www.hayase.lab.uec.ac.jp/
Research field (4):
Electric/electronic material engineering
, Electronic devices and equipment
, Polymer materials
, Organic functional materials
Research keywords (4):
Thermoelectric devices
, Electronic material (organic, Inorganic)
, Solar cell (Photovoltaic devices)
, Photoelectric conversion device
Research theme for competitive and other funds (17):
- 2023 - 2027 小規模創電・蓄電の統合運用を可能にするインターネット型電力プラットフォーム
- 2019 - 2024 無鉛型高次元ハライドペロブスカイト材料による太陽電池の高効率・高耐久化
- 2020 - 2023 Control of the nano-interface of heterojunction quantum dot solar cells and improvement of the charge separation efficiency for multiple excitons
- 2019 - 2021 鉛を含まないSn-ペロブスカイト太陽電池の高効率化指針提案
- 2017 - 2020 錫ペロブスカイト光電変換素子の発電阻害機構解明とナノへテロ界面構築による高効率化
- 2015 - 2018 Direct observation of spin formation and charge accmulation in perovskite solar cells and the performance improvement
- 2015 - 2017 Trap distribution analysis for thermal stimulation current of tin-based perovskite thin film
- 2015 - 2017 In-situ measurement of perovskite crystal growth and the solar cell efficiency.
- 2014 - 2017 Carrier diffusions and their electronic states at interfaces in perovskite solar cells
- 2014 - 2017 Investigation of suitable dye molecular framework focusing small driving force for electron injection and dye regeneration in NIR dyes for efficient photoconversion
- 2014 - 2017 Nano-interface engineering of heterojunction quantum dot solar cells and the effect on charge separation of multiple excitons
- 2009 - 2012 Proposal of photoelectric conversion device structures fabricated by merging molecular diffusion engineering in continuous nanopores and photoelectron conversion interface engineering
- 2007 - 2008 酸化物半導体ナノホールアレイからの電気化学発光と波長制御
- 2003 - 2006 Low temperature fabrication of electron-nano-path and the performance of the solar cell consisting of the bi-continuous nano-path.
- 2002 - 2006 Highly Efficiency Solar Energy Conversion Using Photointerface System
- 2001 - 2006 High efficiency quasi-solid dye sensitized solar cells consisting of organic-inorganic hybrid ionic paths
- 2002 - 2002 擬固体電解質とナノチタニア層との界面最適化による擬固体色素増感太陽電池の高性能化
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Papers (341):
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Liang Wang, Hong Zhang, Qing Shen, Shuzi Hayase. The Application of Metallic Sn in Sn-Based Perovskite Solar Cells. ChemNanoMat. 2024. 10. 10
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Ajay Kumar Baranwal, Huan Bi, Gaurav Kapil, Takeshi Kitamura, Liang Wang, Jiaqi Liu, Qing Shen, Shuzi Hayase. Enhanced Electron Transport in Heterojunction Sn-Perovskite Solar Cells Assisted by [6,6]-Phenyl-C61-butyric Acid Methyl Ester as a Dopant. ACS Energy Letters. 2024. 9. 8. 4119-4126
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Huan Bi, Jiaqi Liu, Liang Wang, Zheng Zhang, Gaurav Kapil, Shahrir Razey Sahamir, Ajay Kumar Baranwal, Yuyao Wei, Yongge Yang, Dandan Wang, et al. Double side passivation of phenylethyl ammonium iodide for all perovskite tandem solar cell with efficiency of 26.8%. EcoEnergy. 2024
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Jiaqi Liu, Huan Bi, Zheng Zhang, Yasuhiro Fujiwara, Yoshitaka Sanehira, Gaurav Kapil, Takeshi Kitamura, Shahrir Razey Sahamir, Ajay Kumar Baranwal, Liang Wang, et al. Restraining Photocurrent Loss of Lead-Free Perovskite Solar Cells by Regulating Surficial Hydroxyl of Fluorine-Doped Tin Oxide. ACS Applied Energy Materials. 2024. 7. 11. 4779-4785
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Aruto Akatsuka, Makoto Miura, Gaurav Kapil, Shuzi Hayase, Hiroyuki Yoshida. Direct measurement of electron affinity of carbazole-based self-assembled monolayer used as hole-selective layer in high-efficiency perovskite solar cells. Applied Physics Letters. 2024. 124. 24
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MISC (98):
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早瀬 修二. 色素増感太陽電池からハロゲン化ペロブスカイト太陽電池へ : 最近の研究動向と今後の展望-Transition from Dye Sensitized Solar Cells to Halide Perovskite Solar Cells : Recent Progress and Future Perspective-特集 第17回光機能性材料セミナー. 日本写真学会誌 = Journal of the Society of Photography and Imaging of Japan. 2022. 85. 1. 45-52
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Hayase Shuzi. Tin lead perovskite solar cells with narrow band gap working as bottom cell of tandem solar cell. Proceedings of the Annual Meeting of the Japan Photovoltaic Society. 2021. 1. 12-13
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スズ系ペロブスカイト太陽電池の高電圧、高効率化. 2021. 66. 4-9
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Research trend of Pb free perovskite solar cells. 2021. 2021. 33. 1-3
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五反田 武志, 早瀬 修二, 松井 卓矢, 齋 均. ペロブスカイト/シリコンタンデム太陽電池の開発-Development of Perovskite/Silicon Tandem Solar Cells-タンデム太陽電池の最近の動向. 応用電子物性分科会誌 = Bulletin of solid state physics and applications / 応用物理学会応用電子物性分科会 編. 2021. 27. 2. 51-56
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Lectures and oral presentations (15):
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Recent progress on narrow band gap perovskite solar cells
(IEEE ICASI, 2019 IEEE International Conference on Applied System Innovation 2019)
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狭バンドギャップペロブスカイト太陽電池の研究開発動向
(日本化学会 2019)
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狭バンドギャップを有するペロブスカイト太陽電池
(NICE研究会講演会 2019)
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Recent research progress on narrow band gap perovskite solar cells and Pb free perovskite solar cells
(International Symposium on Solar Energy Materials 2019)
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狭バンドギャップペロブスカイト太陽電池ー鉛を用いないペロブスカイト太陽電池へのアプローチー
(有機エレクトロニクス研究会 2019)
more...
Education (2):
- - 1983 Osaka University 理学研究科
- - 1978 Osaka University 理学研究科 高分子化学
Professional career (1):
- Doctor of Science (Osaka University)
Work history (2):
- 2001/04/01 - 2019/03/31 Kyushu Institute of Technology Graduate School of Life Science and Systems Engineering Professor
- 1978/04/01 - 2001/03/31 Toshiba Corporation Research and Development Center 退職時 研究主幹(部長)
Association Membership(s) (7):
高分子学会
, 日本化学会
, 電気化学会
, American Chemical Society
, Electrochemisal Society
, 応用物理学会
, MRS
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