Rchr
J-GLOBAL ID:202201006888315739   Update date: Nov. 05, 2024

Mochizuki Yasuhide

モチヅキ ヤスヒデ | Mochizuki Yasuhide
Affiliation and department:
Job title: Assistant Professor
Research theme for competitive and other funds  (9):
  • 2023 - 2025 第一原理計算によるCeO2の酸素空孔形成エネルギーと酸素移動活性化エネルギーのドーパント依存性の調査
  • 2022 - 2025 Development of new amorphous inorganic antiviral materials for game-changing from vaccine reliance
  • 2022 - 2025 インシリコ材料探索に向けた低熱・負熱膨張材料の系統的計算と機構解明
  • 2022 - 2025 格子振動に由来する負熱膨張材料の機構解析と設計指針創出
  • 2023 - 2024 格子振動由来の負熱膨張性の統一的機構の解明
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Papers (24):
  • Hiroki Koiso, Suguru Yoshida, Takayuki Nagai, Toshihiro Isobe, Akira Nakajima, Yasuhide Mochizuki. Thermal expansion and phase stability of BF3 ( B=Sc , Y, La, Al, Ga, In) from first principles. Physical Review B. 2024. 110. 6. 064104
  • Ryuju Kiribayashi, Riku Nakane, Kayano Sunada, Yasuhide Mochizuki, Toshihiro Isobe, Takeshi Nagai, Hitoshi Ishiguro, Akira Nakajima. Antiviral and antibacterial activities of yttria-stabilized zirconia. Materials Letters. 2024. 367. 136658
  • Riku Nakane, Ryuju Kiribayashi, Kayano Sunada, Yasuhide Mochizuki, Toshihiro Isobe, Sachiko Matsushita, Takeshi Nagai, Hitoshi Ishiguro, Akira Nakajima. Degradation of 2-naphthol in water and antibacterial/antiviral activity by Zn2SnO4, ZnSn(OH)6 and Y2Sn2O7. Ceramics International. 2024. 50. 10797-10805
  • Yasuhide Mochizuki, Hiroki Koiso, Kaede Nagamatsu, Soungmin Bae, Toshihiro Isobe, Akira Nakajima. Thermal Properties of the Element and Binary Oxides toward Negative Thermal Expansion: A First-Principles Lattice-Dynamics Study. The Journal of Physical Chemistry C. 2024. 128. 1. 525-535
  • Yasuhide Mochizuki, Kaede Nagamatsu, Hiroki Koiso, Toshihiro Isobe, Akira Nakajima. Mechanism of Negative Thermal Expansion in Monoclinic Cu2P2O7 from First Principles. The Journal of Physical Chemistry Letters. 2024. 15. 1. 156-164
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Lectures and oral presentations  (31):
  • Mechanism Elucidation of Phonon-Induced Negative Thermal Expansion from First Principles
    (2023)
  • Two Coexisting Mechanisms for Ferroelectric Phase Transition in Li2SrNb2O7
    (Materials Research Meetings 2021 2021)
  • Two Coexisting Mechanisms in Weak Ferroelectricity of Li2SrNb2O7
    (The 12th International Conference on the Science and Technology for Advanced Ceramics (STAC-12) 2021)
  • Structural exploration of perovskites using first-principles lattice-dynamics calculations
    (2020)
  • 第一原理格子動力学計算を用いたペロブスカイト物質の構造探索
    (第40回電子材料研究討論会 2020)
more...
Education (3):
  • 2018 - 2021 Tokyo Institute of Technology School of Materials and Chemical Technology Department of Materials Science and Engineering
  • 2016 - 2018 Tokyo Institute of Technology School of Materials and Chemical Technology Department of Materials Science and Engineering
  • 2012 - 2016 Tokyo Institute of Technology School of Engineering Department of Inorganic Materials
Professional career (3):
  • Doctor of Engineering (Tokyo Institute of Technology)
  • Master of Engineering (Tokyo Institute of Technology)
  • Bachelor of Engineering (Tokyo Institute of Technology)
Work history (4):
  • 2024/10 - 現在 Institute of Sciecne Tokyo Department of Materials Science and Engineering Assistant Professor
  • 2021/04 - 2024/09 Tokyo Institute of Technology Department of Materials Science and Engineering Assistant Professor
  • 2018/04 - 2021/03 Japan Society for the Promotion of Science
  • 2016/10 - 2018/03 Tokyo Institute of Technology ACEEES Research Assistant
Committee career (1):
  • 2024/04 - 現在 Ceramic Society of Japan Editorial committee
Awards (9):
  • 2023/09 - 日本セラミックス協会 優秀講演賞
  • 2023/09 - 日本セラミックス協会 最優秀ポスター発表賞
  • 2023/08 - Tokyo Institute of Technology Tokyo Tech Challenging Research Award
  • 2023/05 - 日本セラミックス協会 2023年年会 優秀ポスター発表賞
  • 2023/01 - Materials Research Society of Japan Award for Encouragement of Research in the 32nd Annual Meeting of MRS-J Symposium D-2
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Association Membership(s) (3):
The Ceramic Society of Japan ,  Materials Research Societry of Japan ,  The Japan Institute of Metals and Materials
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