Rchr
J-GLOBAL ID:200901055398754120   Update date: Feb. 05, 2024

Kurosaki Ken

Kurosaki Ken
Affiliation and department:
Job title: Associate Professor
Research field  (2): Metallic materials ,  Nuclear engineering
Research keywords  (6): Materials Science ,  Nuclear Engineering ,  Nuclear Fuels ,  Nuclear Materials ,  thermoelectrics ,  Materials Informatics
Research theme for competitive and other funds  (13):
  • 2020 - 2023 ホウ素同位体濃縮高熱伝導率ヒ化ホウ素
  • 2018 - 2021 核分裂生成物の固体核燃料に対するぬれ性と放出挙動
  • 2015 - 2021 Effective Phonon Scattering and Minority Charge Carrier Blocking for High-Performance Bulk Thermoelectrics
  • 2013 - 2017 Development of high-efficiency silicon-based thermoelectric materials by modulation doping and nanostructuring
  • 2011 - 2012 Synthesis and Characterization of Au nanoparticle-Supported Bulk Thermoelectric Materials
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Papers (392):
  • Yifan Sun, Jiahui Fu, Yuji Ohishi, Keita Toh, Koichiro Suekuni, Kunihiro Kihou, Ushin Anazawa, Chul Ho Lee, Ken Kurosaki. Mechanical Compatibility between Mg3(Sb,Bi)2 and MgAgSb in Thermoelectric Modules. ACS Applied Materials and Interfaces. 2023. 15. 19. 23246-23254
  • Sora at Tanusilp, Masaya Kumagai, Yuji Ohishi, Manabu Ishimaru, Naoki Sadayori, Ken Kurosaki. Planar defects-induced low thermal conductivity in a superhard material SiB6. Journal of Alloys and Compounds. 2023. 939
  • Y. Sun, M. Kumagai, M. Jin, E. Sato, M. Aoki, Y. Ohishi, K. Kurosaki. A multiclass classification model for predicting the thermal conductivity of uranium compounds. Journal of Nuclear Science and Technology. 2023
  • Yifan Sun, Shiho Watanabe, Hiroaki Muta, Yuji Ohishi, Ken Kurosaki. Phase behavior of oxidized Ce and Gd-doped (U,Zr)O2. Journal of Nuclear Science and Technology. 2023. 60. 4. 425-434
  • Yifan Sun, Yuji Ohishi, Junya Higaki, Hiroaki Muta, Ken Kurosaki. Thermophysical and mechanical properties of LaB6 and CeB6 synthesized through spark plasma sintering. Journal of Nuclear Science and Technology. 2023
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MISC (12):
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Patents (5):
  • 熱電変換材料、およびその製造方法、並びに熱電変換素子
  • 熱電変換材料、熱電変換素子およびその作製方法
  • 熱発電組成物
  • 熱電材料とその製造方法
  • タリウム化合物熱電変換材料とその製造方法
Books (1):
  • Thermoelectric materials : principles and concepts for enhanced properties
    De Gruyter 2020 ISBN:9783110596489
Education (3):
  • 1997 - 1998 Osaka University Graduate School of Engineering Department of Nuclear Engineering
  • 1995 - 1997 Osaka University Graduate School of Engineering Department of Nuclear Engineering
  • 1991 - 1995 Osaka University School of Engineering Department of Nuclear Engineering
Professional career (1):
  • Ph. D
Work history (5):
  • 2023/04 - 現在 Kyoto University Institute for Integrated Radiation and Nuclear Science Director, Professor
  • 2019/04 - 現在 Kyoto University Institute for Integrated Radiation and Nuclear Science Professor
  • 2009/04 - 2019/03 Osaka University Graduate School of Engineering
  • 2007/04 - 2009/03 Osaka University Graduate School of Engineering
  • 1998/08 - 2007/03 Osaka University Graduate School of Engineering
Awards (17):
  • 2022/07 - 日本熱電学会 ゼーベック効果発見200周年記念動画コンテスト最優秀賞 元素擬人化でわかる熱電変換
  • 2019/02 - Acta Materialia, Inc. Outstanding reviewer award for Scripta Materialia in 2018
  • 2018/08 - 日本熱電学会 学術賞
  • 2015/08 - 大阪大学総長奨励賞
  • 2015/03 - 日本原子力学会核燃料部会部会賞(奨励賞)
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Association Membership(s) (3):
日本熱電学会 ,  日本金属学会 ,  日本原子力学会
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