Details of the Researcher

PHOTO

Yuto Shimizu
Section
Institute of Multidisciplinary Research for Advanced Materials
Job title
Degree
  • Doctor of Engineering (Hokkaido University)

e-Rad No.
31041345

Research History 2

  • 2026/04 - Present
    Tohoku University Institute of Multidisciplinary Research for Advanced Materials

  • 2023/04 - 2026/03
    Japan Society for the Promotion of Science

Education 3

  • Hokkaido University Graduate School of Engineering Division of Materials Science and Engineering

    2023/04 - 2026/03

  • Hokkaido University Graduate School of Engineering Division of Materials Science and Engineering

    2021/04 - 2023/03

  • Hokkaido University School of Engineering Department of Applied Science and Engineering

    2019/04 - 2021/03

Professional Memberships 6

  • The Japan Institute of Energy

  • The Society of Chemical Engineers, Japan

  • The Japan Institute of Light Metals

  • The Japan Institute of Metals and Materials

  • The Iron and Steel Institute of Japan

  • The Heat Transfer Society of Japan

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Research Interests 4

  • Materials science

  • Heat storage

  • Phase change materials

  • Thermal energy storage

Research Areas 3

  • Energy / Earth resource engineering, energy science /

  • Nanotechnology/Materials / Metals and resources production /

  • Manufacturing technology (mechanical, electrical/electronic, chemical engineering) / Thermal engineering /

Awards 6

  1. Student Encouragement Award, SCEJ 91st Annual Meeting

    2026/03

  2. Poster Presentation Award

    2025/09 The Japan Institute of Energy

  3. 日本金属学会 2022年秋期講演大会第39回ポスターセッション優秀ポスター賞

    2022/09

  4. 化学工学会 第53回秋季大会 熱工学部会賞

    2022/09

  5. 日本鉄鋼協会 第184回秋季講演大会学生ポスターセッション優秀賞

    2022/09

  6. 第58回 日本伝熱シンポジウム 優秀プレゼンテーション賞

    2021/05 日本伝熱学会

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Papers 27

  1. Microencapsulation of Zn Phase Change Material via Dry Synthesis Method and Its Shell Formation Mechanism Peer-reviewed

    Kei Kotani, Melbert Jeem, Yuto Shimizu, Tomokazu Nakamura, Joshua Chidiebere Mba, Keita Tanahashi, Takahiro Nomura

    Energy & Fuels 40 (30) 16646-16660 2026/07/30

    DOI: 10.1021/acs.energyfuels.6c00861  

  2. Mechanical Microencapsulation and Shell Formation Mechanism of High Working Temperature Al-25Si Alloy Phase Change Material Peer-reviewed

    Joshua Chidiebere Mba, Kaixin Dong, Keita Tanahashi, Yuto Shimizu, Tomokazu Nakamura, Melbert Jeem, Takahiro Nomura

    ACS Sustainable Chemistry & Engineering 2026/03/02

    DOI: 10.1021/acssuschemeng.5c05348  

  3. Microencapsulation of high-temperature Cu Si based phase change materials utilizing oxide ion conductors for robust shell formation Peer-reviewed

    Koji Takizawa, Noritoshi Yagihashi, Yuki Nakama, Yuto Shimizu, Tomokazu Nakamura, Joshua Chidiebere Mba, Melbert Jeem, Takahiro Nomura

    Chemical Engineering Journal 174417-174417 2026/02

    Publisher: Elsevier BV

    DOI: 10.1016/j.cej.2026.174417  

    ISSN: 1385-8947

  4. Thermal energy storage catalysts for coproduction process in integrated CO2 methanation and NH3 decomposition Peer-reviewed

    Cholila Tamzysi, Yuto Shimizu, Kengo Mimura, Tomokazu Nakamura, Melbert Jeem, Takahiro Nomura

    Chemical Engineering Journal 524 169599 2025/11

    Publisher: Elsevier BV

    DOI: 10.1016/j.cej.2025.169599  

    ISSN: 1385-8947

  5. Cu-Si-Al Alloy-Based Phase Change Composite for the Chemical-Looping Reverse Water-Gas Shift Process Peer-reviewed

    Koji Takizawa, Risa Sakurai, Haruka Nishiyama, Keisuke Iijima, Noritoshi Yagihashi, Yuki Nakama, Kengo Mimura, Yuto Shimizu, Melbert Jeem, Takahiro Nomura

    ENERGY & FUELS 39 (37) 18066-18076 2025/09/18

    DOI: 10.1021/acs.energyfuels.5c03057  

    ISSN: 0887-0624

    eISSN: 1520-5029

  6. High-temperature composite phase change material with “concrete-like” strength even beyond the eutectic temperature Peer-reviewed

    Yuto Shimizu, Takahiro Kawaguchi, Joshua Chidiebere Mba, Tomokazu Nakamura, Keita Tanahashi, Melbert Jeem, Takahiro Nomura

    Journal of Materials Chemistry A 2025/08

    DOI: 10.1039/D5TA03994K  

  7. Development of a heat storage heater for hybrid electrothermal conversion and latent heat storage Peer-reviewed

    Takahiro Kawaguchi, Yusuke Sato, Joshua Chidiebere Mba, Yuto Shimizu, Kaixin Dong, Melbert Jeem, Takahiro Nomura

    Journal of Materials Chemistry A 2025/07

    DOI: 10.1039/D5TA01665G  

  8. Ti-doped Al-25mass%Si microencapsulated phase change material moldings for efficient high temperature thermal energy storage and applications Peer-reviewed

    Joshua Chidiebere Mba, Yuto Shimizu, Takahiro Kawaguchi, Yusuke Sato, Kaixin Dong, Melbert Jeem, Takahiro Nomura

    Journal of Energy Storage 114 115626-115626 2025/04

    Publisher: Elsevier BV

    DOI: 10.1016/j.est.2025.115626  

    ISSN: 2352-152X

  9. Sensible/latent hybrid heat storage material using Solar Salt and Al-Cu-Si alloy-based phase change material Peer-reviewed

    Yuto Shimizu

    CHEMICAL ENGINEERING JOURNAL 2025/02

    DOI: 10.1016/J.CEJ.2025.160832  

    ISSN: 1385-8947

  10. Die-cast Al–Si–Cu alloy (ADC12) as a phase change material for medium–high-temperature heat storage Peer-reviewed

    Yuto Shimizu, Takahiro Nomura

    Journal of Alloys and Compounds 2025/02

    DOI: 10.1016/j.jallcom.2025.179006  

    ISSN: 0925-8388

  11. Experimental investigation of high-temperature latent heat storage packed bed using alloy-based phase change materials Peer-reviewed

    Ade Kurniawan, Rei Tsukiashi, Yuto Shimizu, Yuusuke Sato, Tomokazu Nakamura, Justin N.W. Chiu, Takahiro Nomura

    Applied Thermal Engineering 2025/01

    DOI: 10.1016/j.applthermaleng.2024.124696  

    ISSN: 1359-4311

  12. Passive thermal regulation using a phase change material for chemical-loop reverse water–gas shift reaction Peer-reviewed

    Koji Takizawa, Dasanayake Aluthge Rasika Sanjeew, Noritoshi Yagihashi, Kengo Mimura, Yuto Shimizu, Melbert Jeem, Takahiro Nomura

    Chemical Engineering Journal 2025/01

    DOI: 10.1016/j.cej.2024.158558  

  13. Thermo-regulating effect of Al–Si microencapsulated phase change material-based catalyst support on ammonia decomposition Peer-reviewed

    Cholila Tamzysi, Yuto Shimizu, Tomokazu Nakamura, Melbert Jeem, Keita Tanahashi, Takahiro Kawaguchi, Kengo Mimura, Ade Kurniawan, Takahiro Nomura

    Reaction Chemistry & Engineering 2025

    DOI: 10.1039/D4RE00380B  

  14. Microencapsulation of Zn-10 mass% Al alloy phase change material via dry synthesis method Peer-reviewed

    Takahiro Kawaguchi, Tomokazu Nakamura, Minako Kondo, Joshua Chidiebere Mba, Kaixin Dong, Yuto Shimizu, Melbert Jeem, Takahiro Nomura

    Chemical Engineering Journal 154782-154782 2024/08

    Publisher: Elsevier BV

    DOI: 10.1016/j.cej.2024.154782  

    ISSN: 1385-8947

  15. Suppression of supercooling and phase change hysteresis of Al-25mass%Si Micro-Encapsulated Phase Change Material (MEPCM) synthesized via novel dry synthesis method Peer-reviewed

    Joshua Chidiebere Mba, Hiroki Sakai, Kaixin Dong, Yuto Shimizu, Minako Kondo, Tomokazu Nakamura, Melbert Jeem, Takahiro Nomura

    Journal of Energy Storage 94 112066-112066 2024/07

    Publisher: Elsevier BV

    DOI: 10.1016/j.est.2024.112066  

    ISSN: 2352-152X

  16. Large supercooling of Al Si alloy in microcapsule composed of Al2O3 shell Peer-reviewed

    Hiroki Sakai, Takahiro Kawaguchi, Yuto Shimizu, Takahiro Nomura

    Journal of Energy Storage 87 111261-111261 2024/05

    Publisher: Elsevier BV

    DOI: 10.1016/j.est.2024.111261  

    ISSN: 2352-152X

  17. Shell-Driven Localized Oxide Nanoparticles Determine the Thermal Stability of Microencapsulated Phase Change Material Peer-reviewed

    Melbert Jeem, Ryosuke Ishida, Minako Kondo, Yuto Shimizu, Takahiro Kawaguchi, Kaixin Dong, Ade Kurniawan, Yuji Kunisada, Norihito Sakaguchi, Takahiro Nomura

    ACS Applied Materials & Interfaces 2024/01/24

    DOI: 10.1021/acsami.3c17129  

    ISSN: 1944-8244 1944-8252

  18. Novel microencapsulated ternary eutectic alloy-based phase change material Peer-reviewed

    Yuto Shimizu, Shunsuke Cho, Takahiro Kawaguchi, Keita Tanahashi, Kaixin Dong, Tomokazu Nakamura, Ade Kurniawan, Melbert Jeem, Takahiro Nomura

    Journal of Energy Storage 2024/01

    DOI: 10.1016/j.est.2023.109535  

    ISSN: 2352-152X

  19. Al–Si–Fe alloy-based phase change material for high-temperature thermal energy storage Peer-reviewed

    Yuto Shimizu, Takahiro Nomura

    High Temperature Materials and Processes 2023/09/07

    DOI: 10.1515/htmp-2022-0280  

    ISSN: 2191-0324

    More details Close

    <jats:title>Abstract</jats:title> <jats:p>Carnot batteries, a type of power-to-heat-to-power energy storage, are in high demand as they can provide a stable supply of renewable energy. Latent heat storage (LHS) using alloy-based phase change materials (PCMs), which have high heat storage density and thermal conductivity, is a promising method. However, LHS requires the development of a PCM with a melting point suitable for its application. For the Carnot battery, the reuse of a conventional ultra-supercritical coal-fired power plant with a maximum operating temperature of approximately 650°C is considered. Therefore, developing a 600°C-class alloy-based PCM is crucial for realizing a highly efficient and environmentally friendly Carnot battery. Using thermodynamic calculation software (FactSage), we found that Al-5.9 mass% Si-1.6 mass% Fe undergoes a phase transformation at 576–619°C, a potential 600°C-class PCM. In this study, we investigated the practicality of an Al–Si–Fe PCM as an LHS material based on its heat storage and release properties and form stability. The examined Al–Si–Fe PCM melted until approximately 620°C with a latent heat capacity of 375–394 J·g<jats:sup>−1</jats:sup>. Furthermore, the PCM was found to have a thermal conductivity of approximately 160 W·m<jats:sup>−1</jats:sup>·K<jats:sup>−1</jats:sup> in the temperature range of 100–500°C, which is significantly better than that of conventional sensible heat storage materials in terms of heat storage capacity and thermal conductivity.</jats:p>

  20. Latent heat storage composites composed of <scp>Al‐Si</scp> microencapsulated phase change material and alumina matrix Peer-reviewed

    Takahiro Kawaguchi, Yuto Shimizu, Kaixin Dong, Ade Kurniawan, Takahiro Nomura

    Energy Storage 2023/06

    Publisher: Wiley

    DOI: 10.1002/est2.493  

    ISSN: 2578-4862

  21. High-temperature ternary Cu-Si-Al alloy as a core-shell microencapsulated phase change material: fabrication via dry synthesis method and its thermal stability mechanism Peer-reviewed

    Aoki, M., Jeem, M., Shimizu, Y., Kawaguchi, T., Kondo, M., Nakamura, T., Fushimi, C., Nomura, T.

    Materials Advances 5 (2) 2023

    DOI: 10.1039/d3ma00788j  

    ISSN: 2633-5409

  22. Developing Composite Phase Change Material with Al–Si Base Microencapsulated Phase Change Material and Glass Frit for High Temperature Applications Peer-reviewed

    Takahiro Kawaguchi, Hiroki Sakai, Yuto Shimizu, Kaixin Dong, Ade Kurniawan, Takahiro Nomura

    ISIJ International 62 (12) 2567-2572 2022/12/15

    Publisher: Iron and Steel Institute of Japan

    DOI: 10.2355/isijinternational.isijint-2022-109  

    ISSN: 0915-1559 1347-5460

  23. Development of core-shell type microencapsulated phase change material with Zn-30 mass% Al alloy and its shell formation mechanism Peer-reviewed

    Takahiro Kawaguchi, Hiroki Sakai, Ryosuke Ishida, Yuto Shimizu, Ade Kurniawan, Takahiro Nomura

    Journal of Energy Storage 55 105577-105577 2022/11

    Publisher: Elsevier {BV}

    DOI: 10.1016/j.est.2022.105577  

    ISSN: 2352-152X

  24. Optimized Preparation of a Low-Working-Temperature Gallium Metal-Based Microencapsulated Phase Change Material Peer-reviewed

    Kaixin Dong, Takahiro Kawaguchi, Yuto Shimizu, Hiroki Sakai, Takahiro Nomura

    ACS Omega 7 (32) 28313-28323 2022/08/16

    Publisher: American Chemical Society ({ACS})

    DOI: 10.1021/acsomega.2c02801  

    ISSN: 2470-1343

  25. Al–Ni alloy-based core-shell type microencapsulated phase change material for high temperature thermal energy utilization Peer-reviewed

    Shimizu, Y., Kawaguchi, T., Sakai, H., Dong, K., Kurniawan, A., Nomura, T.

    Solar Energy Materials and Solar Cells 246 2022

    DOI: 10.1016/j.solmat.2022.111874  

    ISSN: 0927-0248

  26. Modified preparation of Al2O3@Al microencapsulated phase change material with high durability for high-temperature thermal energy storage over 650 °C Peer-reviewed

    Yuto Shimizu

    SOLAR ENERGY MATERIALS AND SOLAR CELLS 237 2022

    DOI: 10.1016/J.SOLMAT.2021.111540  

  27. Functional surface modification of Al-Si@Al2O3 microencapsulated phase change material Peer-reviewed

    Yuto Shimizu

    JOURNAL OF ENERGY STORAGE 52 2022

    DOI: 10.1016/J.EST.2022.104919  

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Misc. 2

  1. P-4-3 Thermal storage performance and high-temperature compressive strength of Al alloy-based latent heat storage composites for Carnot batteries

    清水友斗, 棚橋慧太, JEEM Melbert, 能村貴宏

    日本エネルギー学会大会講演要旨集(Web) 34 2025

    ISSN: 2423-8325

  2. Performance evaluation of reverse water gas shift reaction by chemical looping using alloy-based phase change material

    滝沢昂嗣, 三村憲吾, 清水友斗, JEEM Melbert, 能村貴宏

    日本伝熱シンポジウム講演論文集(CD-ROM) 61st 2024

    ISSN: 1346-1532

Books and Other Publications 1

  1. 熱制御に向けた相変化材料PCMの開発と応用

    能村貴宏, 清水友斗

    シーエムシー出版 2024/04

    ISBN: 9784781317991

Presentations 32

  1. Effects of metal purity and superheating on the degree of supercooling in Al-based latent heat storage microcapsules

    Yuto Shimizu, Keita Tanahashi, Melbert Jeem, Takahiro Nomura

    The 63rd National Heat Transfer Symposium 2026/05/26

  2. Development of aluminum-based microencapsulated phase change materials and their supercooling phenomena

    Yuto Shimizu, Keita Tanahashi, Melbert Jeem, Takahiro Nomura

    2026/05/16

  3. Investigation of functional enhancement of high-temperature Al-based latent heat storage materials and their phase-change properties

    Yuto Shimizu, Keita Tanahashi, Melbert Jeem, Takahiro Nomura

    2026/03/19

  4. Investigation of supercooling phenomena in Al microparticles coated with alumina shell

    Yuto Shimizu, Keita Tanahashi, Melbert Jeem, Takahiro Nomura

    2026/03/13

  5. Effect of superheating on the solidification heat-release temperature of Al-based latent heat storage microcapsules

    Yuto Shimizu, Keita Tanahashi, Melbert Jeem, Takahiro Nomura

    2026/03/12

  6. 鉄鋼排熱回収のためのAl基合金系相変化材料の開発 Invited

    清水友斗

    第16回 製鉄・資源に関するWorkshop(還元研究会) 2025/12/16

  7. Effect of initial superheating on supercooling behavior of Al-Cu-Si alloy-based phase change microcapsules

    Yuto SHIMIZU, Keita TANAHASHI, Melbert JEEM, Takahiro NOMURA

    149th JILM Annual Meeting 2025/11/08

  8. Thermal storage performance and high-temperature compressive strength of Al alloy-based latent heat storage composites for Carnot batteries

    Yuto SHIMIZU, Keita TANAHASHI, Melbert JEEM, Takahiro NOMURA

    The 34th Annual Conference of the Japan Institute of Energy 2025/08/08

  9. マイクロカプセル化されたAl-Cu-Si合金の過冷却特性調査

    清水友斗、Melbert Jeem、能村貴宏

    日本金属学会 2025年春期(第176回)講演大会 2025/03/10

  10. 鉄鋼排熱回収のための金属系潜熱蓄熱材の開発 Invited

    清水友斗

    第15回 製鉄・資源に関するWorkshop(還元研究会) 2024/12/17

  11. Ternary Al-Cu-Si Alloy-Based Microencapsulated Phase Change Material for Middle-High Temperature Applications International-presentation

    Yuto Shimizu, Melbert Jeem, Takahiro Nomura

    2024 MRS Fall Meeting & Exhibit 2024/12/03

  12. マイクロ空間に閉じ込められたアルミニウム合金の過冷却特性調査

    清水友斗、Melbert Jeem、能村貴宏

    軽金属学会 第147回秋期大会 2024/11/09

  13. Al系潜熱蓄熱マイクロカプセルの過冷却特性の調査

    清水友斗、Melbert Jeem、能村貴宏

    日本金属学会 2024年秋期(第175回)講演大会 2024/09/20

  14. 溶融硝酸塩とAl系相変化マイクロカプセルを用いた顕熱/潜熱ハイブリッド蓄熱システムの可能性調査

    清水友斗、中村友一、Melbert Jeem、能村貴宏

    化学工学会第55回秋季大会 2024/09/11

  15. Composite Al–Cu–Si alloy-based microencapsulated phase change material for middle-high-temperature applications International-presentation

    Yuto Shimizu, Melbert Jeem, Takahiro Nomura

    ACTS2024 2024/06/24

  16. Sensible/latent hybrid heat storage using molten nitrate and Al alloy-based phase-change material International-presentation

    Yuto Shimizu, Melbert Jeem, Takahiro Nomura

    Enerstock 2024 2024/06/05

  17. 中高温用Al-Cu-Si合金系潜熱蓄熱ペレットの開発とその熱物性調査

    清水 友斗、中村 友一、Melbert Jeem、能村 貴宏

    第61回日本伝熱シンポジウム 2024/05/29

  18. Al-Cu-Si合金系潜熱蓄熱ペレットの熱及び高温下圧縮特性

    清水友斗、Melbert Jeem、能村貴宏

    日本鉄鋼協会 第187回春季講演大会 2024/03/14

  19. アルミニウム系相変化マイクロカプセルの融解凝固特性調査

    清水友斗、能村貴宏

    軽金属学会 第145回秋期大会 2023/11/12

  20. 溶融硝酸塩とAl合金系相変化マイクロカプセルを用いた液体顕熱/潜熱ハイブリッド蓄熱材の基礎検討

    清水友斗、Melbert Jeem、能村貴宏

    日本鉄鋼協会 第186回 秋季講演大会 2023/09/21

  21. 中高温用Al-Cu-Si系潜熱蓄熱コンポジットの熱物性と機械的特性の評価

    清水友斗、川口貴大、Melbert Jeem、能村貴宏

    化学工学会第54回秋季大会 2023/09/11

  22. Design of ternary Al-alloy phase change material International-presentation

    Yuto Shimizu, Takahiro Nomura

    Eurotherm Seminar #116 - Innovative solutions for thermal energy storage deployment 2023/05/25

  23. Development of Al-Si-Fe series alloy phase change material for high-temperature application International-presentation

    Yuto Shimizu, Takahiro Nomura

    THANOS Workshop on Thermal Energy Storage 2023/02/22

  24. Microencapsulation of ternary alloy-based phase change material for high temperature application International-presentation

    Yuto Shimizu, Rei Tsukiashi, Ade Kurniawan, Melbert Jeem, Takahiro Nomura

    The Sixth International Symposium on Innovative Materials and Processes in Energy Systems (IMPRES2022) 2022/10/26

  25. 中高温用顕熱/潜熱蓄熱・熱輸送材料の基礎検討

    清水友斗、Ade Kurniawan、Melbert Jeem、能村貴宏

    日本鉄鋼協会 第184回秋季講演大会 2022/09/22

  26. 高温蓄熱システムのためのAl-Ni合金系相変化マイクロカプセルの開発

    清水友斗、Ade Kurniawan、Melbert Jeem、能村貴宏

    日本金属学会 2022年秋季 第171回講演大会 2022/09/21

  27. 高温鉄鋼廃熱利用のためのAl-Cu-Si系潜熱蓄熱粒子の開発

    清水友斗、月足嶺、Ade Kurniawan、Melbert Jeem、能村貴宏

    日本鉄鋼協会 第184回秋季講演大会 2022/09/21

  28. 中高温用Al-Cu-Si系潜熱蓄熱粒子充填層の基礎伝熱特性調査

    清水友斗、月足嶺、Ade Kurniawan、Melbert Jeem、能村貴宏

    化学工学会 第53回秋季大会 2022/09/14

  29. 500°C級三元系合金相変化マイクロカプセルの開発

    清水友斗、川口貴大、Ade Kurniawan、能村貴宏

    第59回日本伝熱シンポジウム 2022/05/18

  30. 600°C級Al-Si-Fe系潜熱蓄熱材の開発

    清水友斗、能村貴宏

    化学工学会 第87年会 2022/03/17

  31. Formation mechanism of Al@Al2O3 core-shell type microencapsulated phase change material International-presentation

    Yuto Shimizu, Takahiro Kawaguchi, Hiroki Sakai, Ade Kurniawan, Takahiro Nomura

    Enerstock 2021 2021/06/10

  32. 高温熱エネルギー貯蔵のためのAl-Ni合金系相変化マイクロカプセル

    清水 友斗, 石田 良介, 川口 貴大, 坂井 浩紀, KURNIAWAN Ade, 能村 貴宏

    第58回日本伝熱シンポジウム 2021/05/25

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Industrial Property Rights 1

  1. 潜熱蓄熱粒子、熱交換材料、および潜熱蓄熱粒子の製造方法

    能村 貴宏, 石田 良介, 川口 貴大, 坂井 浩紀, ジェーム, メルバート, 清水 友斗

    特許特許第7669068号

    Property Type: Patent

Research Projects 5

  1. Development of Induction-Heated Ultra-High Temperature Latent Heat Thermal Energy Storage Technology Competitive

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for JSPS Fellows

    Institution: Tohoku University

    2026/04 - 2029/03

  2. 浮遊法を用いたCu合金融体における熱物性および過冷却特性の熱履歴依存性調査 Competitive

    清水友斗

    Offer Organization: 公益社団法人日本金属学会

    System: 第7回フロンティア研究助成

    2026/09 - 2028/08

  3. Power-to-Heat-to-Power型大規模蓄エネルギーシステムのためのAl合金系潜熱蓄熱構造体の開発 Competitive

    清水友斗, 福山博之, 能村貴宏

    Offer Organization: 一般社団法人 日本アルミニウム協会

    System: 令和8年度 アルミニウム研究助成

    2026/04 - 2028/03

  4. 高温熱利用システムのための先進的合金系潜熱蓄熱材料の開発と応用

    清水 友斗

    Offer Organization: 公益財団法人 軽金属奨学会

    System: 軽金属奨学会特别奨学生 研究費補助

    2023/04 - 2026/03

  5. Development of glass-transition type Al alloy based microencapsulated phase change material Competitive

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for JSPS Fellows

    Institution: Hokkaido University

    2023/04 - 2026/03

Social Activities 2

  1. よく学び、よく遊べ

    えんじにあRing 2024年12月号

  2. Toward a Homeostatic Society

Other 2

  1. 東電記念財団 2023年度国際技術交流援助

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    Third Asian Conference on Thermal Sciences (ACTS 2024) 出席の旅費支援 (Shanghai, China)

  2. 公益財団法人 スズキ財団 研究者海外研修助成

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    The 6th International Symposium on Innovative Materials and Processes in Energy Systems (IMPRES2022) 出席の旅費支援 (Barcelona, Spain)