Rchr
J-GLOBAL ID:201801009400282620
Update date: Oct. 31, 2024
Takanori Motoki
モトキ タカノリ | Takanori Motoki
Affiliation and department:
Research field (2):
Thin-film surfaces and interfaces
, Inorganic materials
Research keywords (4):
超伝導溶融凝固バルク
, Thin film materials
, Materials Science
, High temperature superconducting materials
Research theme for competitive and other funds (10):
- 2022 - 2027 卓上NMRに適するリング状強力超電導バルク磁石の開発
- 2022 - 2025 Development of high-temperature superconducting coated conductors with superior mass productivity where defects and impurities function cooperatively
- 2024 - 2025 形状自由度の高い強力超伝導バルク磁石の開発
- 2022 - 2025 小型卓上NMR/MRIに適するリング状強力高温超伝導バルク磁石の創製
- 2023 - 2024 大型強力高温超電導バルク磁石の開発
- 2023 - 2024 形状自由度の高い強力超伝導バルク磁石の開発
- 2022 - 2023 形状自由度の高い強力超伝導バルク磁石の開発
- 2019 - 2022 Establishment and demonstration of the control of stacking faults for rare-earth based textured high temperature superconducting materials
- 2017 - 2019 Development and control of microstructures of rare-earth based high temperature superconducting films by introduction of layered oxyhalides
- 2016 - 2018 Cl添加による希土類系高温超伝導体薄膜の結晶成長過程の解明と機能改善
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Papers (27):
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Takanori Motoki, Jun-ichi Shimoyama. Excellent field-trapping properties of large ring-shaped REBCO melt-textured bulks fabricated by the single-direction melt growth (SDMG) method. Superconductor Science and Technology. 2024
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Yasuaki Takeda, Gen Nishijima, Ukyo Nakai, Takanori Motoki, Jun-ichi Shimoyama, Hitoshi Kitaguchi. Angular Dependence of Critical Current and Grain Alignment in Bi-2223 Superconducting Joint. IEEE Transactions on Applied Superconductivity. 2024. 34. 5. 1-5
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M. Dogruer, T. Motoki, M. Semba, S. Nakamura, J. Shimoyama. Mechanical properties of Ag-added DyBa2Cu3Oy superconducting melt-textured bulks prepared by the single-direction melt growth method. Materials Today Communications. 2024. 39
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Jun-ichi Shimoyama, Takanori Motoki. Current Status of High Temperature Superconducting Materials and their Various Applications. IEEJ Transactions on Electrical and Electronic Engineering. 2023. 19. 3. 292-304
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Pavel Diko, Katarína Zmorayová, Takanori Motoki, Jun-ichi Shimoyama. Microstructure of DyBCO bulk superconductors prepared using single-direction melt-growth (SDMG) method. Ceramics International. 2023. 49. 23. 39280-39288
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MISC (192):
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P. Diko, K. Zmorayova, V. Kucharova, T. Motoki, J. Shimoyama. MICROSTRUCTURE OF DYBCO BULK CYLINDERS AND RINGS PREPARED BY THE SDMG PROCESS. 9th international conference on superconductivity and magnetism, 2nd international conference on quantum materials and technologies. 2024
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関口直希, 岩崎響, 元木貴則, 下山淳一. Physical properties of MgB2 bulks starting from B-rich precursor. 電気学会研究会資料(Web). 2023. 2023. 17-31. 5-8
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井上太希, 元木貴則, 下山淳一. Attempts for development of Bi2223-La214-Y123 superconducting joint. 電気学会研究会資料(Web). 2023. 2023. 1-15. 29-32
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佐藤修平, 元木貴則, 下山淳一. Synthesis of c-axis oriented Bi2223 sintered bulks with various Pb doping levels and their characteristics at grain boundaries. 電気学会研究会資料(Web). 2023. 2023. 17-31. 9-13
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P. Diko, M. Radusovska, D. Volochova, K. Zmorayová, V. Kucharova, T. Hlásek, V. Plecháček, X. Yao, J. Noudem, T. Motoki. Microstructure and superconducting properties of REBCO bulks studied at DMP IEP SAS Košice. 13th International Workshop on Processing and Application of Superconducting Bulk Materials. 2023
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Patents (2):
Books (3):
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ゾル-ゲル法の最新動向
シーエムシー出版 2023 ISBN:9784781317434
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ゾル-ゲルテクノロジーの最新動向
シーエムシー出版 2017 ISBN:9784781312583
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塩素添加によるフッ素フリーMOD法YBCO薄膜の結晶化促進と高機能化
元木貴則 2017
Lectures and oral presentations (66):
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一方向溶融成長(SDMG)法による60 mm級大型REBCOバルクの育成
(第107回春季低温工学・超電導学会 2024)
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RE123薄膜における様々な積層欠陥導入手法の開発
(第71応用物理学会春季学術講演会 2024)
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SDMG法で作製したREBCO溶融凝固バルクの結晶性の制御
(第71応用物理学会春季学術講演会 2024)
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Advancements in Single-Direction Melt Growth (SDMG) for Preparation of Large and Uniform REBCO Melt-Textured bulks with Various Shapes
(MRM2023/IUMRS-ICA2023 Grand Meeting 2023)
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卓上NMR実現に向けた強力高温超電導バルク磁石の開発
(新化学技術推進協会 電子情報技術部会 ナノフォトニクスエレクトロニクス交流会 講演会 「超電導技術開発の最新動向」 2023)
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Education (3):
- 2014 - 2016 東京大学大学院 工学系研究科 応用化学専攻博士課程
- 2012 - 2014 東京大学大学院 工学系研究科 応用化学専攻
- 2008 - 2012 Univ. of Tokyo
Work history (2):
- 2018/04 - 現在 Aoyama Gakuin University Department of Physical Sciences, College of Science and Engineering
- 2016/04 - 2018/03 Aoyama Gakuin Univ.
Committee career (4):
- 2024/05 - 現在 低温工学・超電導学会 基盤強化委員会 委員長
- 2024/04 - 現在 応用物理学会 超伝導分科会 幹事
- 2019/04 - 2024/04 低温工学・超電導学会 基盤強化委員会委員
- 2018/04 - 2024/03 低温工学・超電導学会 若手の会 会長
Awards (13):
- 2024/05 - 低温工学・超電導学会 令和6年度奨励賞
- 2023/12 - 電気学会超電導機器技術委員会 優秀発表賞 一方向溶融成長(SDMG)法による均質、大型かつ形状自由度の高いREBCO溶融凝固バルクの開発
- 2023/09 - EUCAS Scientific Committees CONECTUS Early Career Award 1st and 2nd prize (shared position) Development of homogeneous and high-performance REBCO bulks with various shapes by the single-direction melt growth (SDMG) method
- 2022/10 - the Superconductor Science and Technology Jan Evetts Award Development of homogeneous and high-performance REBCO bulks with various shapes by the single-direction melt growth (SDMG) method
- 2021/05 - Presentation Award
- 2020/03 - 応用物理学会 講演奨励賞 水蒸気含有酸素雰囲気下アニールによるREBCO溶融凝固バルクにおける酸素拡散高速化機構の解明
- 2020/01 - 10th ACASC/2nd Asian ICMC/ CSSJ Joint Conference Outstanding Poster Presentation Award Introduction of fast oxygen diffusion paths in REBCO melt-textured bulks effective for reducing annealing time
- 2018/03 - 応用物理学会超伝導分科会 第9回超伝導分科会研究奨励賞 Dramatic effects of chlorine addition on expanding synthesis conditions for fluorine-free metal-organic decomposition YBa2Cu3Oy films
- 2016/11 - 1st Asian ICMC and CSSJ 50th Anniversary Conference Outstanding Poster Presentation Award Largely Expanded Sintering Conditions Achieved by Cl-addition to Fluorine-Free MOD Processed YBCO Films
- 2015/11 - International Symposium on Frontiers in Materials Science Best Asian Award Characteristic microstructures observed in Cl-doped YBCO superconducting thin films prepared by fluorine-free MOD method
- 2014/05 - 低温工学・超電導学会 平成26年度優良発表賞 FF-MOD法Y123薄膜の ピンニング特性に及ぼす塩素ドープ効果
- 2014/02 - 東京大学大学院応用化学専攻 藤島賞 RE123薄膜への 新規ピンニングセンターの導入
- 2013/05 - 低温工学・超電導学会 国際交流若手賞 FF-MOD法Y123薄膜の ピンニング特性に及ぼす塩素ドープ効果
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Association Membership(s) (2):
THE JAPAN SOCIETY OF APPLIED PHYSICS
, CRYOGENICS AND SUPERCONDUCTIVITY SOCIETY OF JAPAN
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