Rchr
J-GLOBAL ID:200901079354542351   Update date: Sep. 11, 2024

Iida Tsutomu

イイダ ツトム | Iida Tsutomu
Affiliation and department:
Job title: Professor
Homepage URL  (1): http://www.tus-iidalab.net/
Research field  (1): Electrical power engineering
Research keywords  (1): 環境低負荷半導体エネルギー変換材料
Research theme for competitive and other funds  (17):
  • 2022 - 2026 電子冷却式温調デバイス開発に向けたシリサイド材料の物性解明と要素技術開発
  • 2020 - 2023 Investigation of thermal capacitors based on electronic phase transition materials and development of highly efficient thermoelectric power generation system
  • 2019 - 2022 Development of automotive thermoelectric waste heat recovery system integration using evolved environmentally benign material of magnesium silicide
  • 2016 - 2019 Development of automotive silicide thermoelectric battery possessing sufficient power generation ability and long-lifetime
  • 2014 - 2017 Theoretical study of structural, electronic, and thermoelectric properties of silicide materials
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Papers (153):
  • Yuki Hiraoka , Yoji Imai , Tsutomu Iida , Haruno Kunioka. Study on the possibility of band gap widening of thermoelectric semiconductor α-SrSi2 by isoelectronic elements incorporation. Computational Condensed Matter. 2024. 40. e00932-1-e00932-7
  • Haruno Kunioka, Daishi Shiojiri, Shinta Takahashi, Kota Hiratsuka, Masato Yamaguchi, Naomi Hirayama, Yoji Imai, Motoharu Imai & Tsutomu Iida. Investigation of group 13 elements as potential candidates for p-type dopants in the narrow-gap thermoelectric semiconductor α-SrSi2. journal of material science. 2024. 59. 7840-7853
  • Daishi Shiojiri, Tsutomu Iida, Naomi Hirayama, Yoji Imai, Hiroharu Sugawara, Jin Kusaka. Recent Studies on the Environmentally Benign Alkaline-Earth Silicide Mg2Si for Middle-Temperature Thermoelectric Applications. Energies. 2022. 15. 13. 4859-4859
  • D. Shiojiri and T. Iida. Tuning the electronic and thermal transport behaviors of metal-dispersed Ti2O3 composites derived by metal-insulator transition. CERAMICS INTERNATIONAL. 2022. 48. 10. 13748-13753
  • Daishi Shiojiri, Tsutomu Iida, Masato Yamaguchi, Naomi Hirayama, Yoji Imai. Performance comparison of hybrid functionals for describing narrow-gap semiconductors: A study on low-temperature thermoelectric material α-SrSi2. Computational Condensed Matter. 2022. 30. e00620-1-e00620-7
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MISC (3):
  • 木村 真一,飯田 努,中田 一弥,寺島 千晶,四反田 功,幸村 孝由,向井 千秋. 宇宙居住へ向けた宇宙ー地上Dual開発の試み:スペースコロニー研究センター. 第63回宇宙科学技術連合講演会講演集. 2019. 10
  • Shinichi KIMURA, Tsutomu IIDA, Kazuya NAKATA, Chiaki TERASHIMA, Isao SHITANDA, Takayoshi KOHMURA, Chiaki MUKAI. The Research Center for Space Colony at the Tokyo University of Science Dual space-earth development of future living technologies. Proceedings of the 32nd International Symposium on Space Technology and Science. 2019. 2019-p-13
  • 木村 真一,飯田 努,中田 一弥,寺島 千晶,四反田 功,幸村 孝由,向井 千秋. 東京理科大学スペースコロニー研究センターについて 宇宙居住技術に関する地上技術活用の試み. 第62回宇宙科学技術連合講演会講演集. 2018. 1H02
Patents (38):
  • 多結晶性マグネシウムシリサイド、焼結体及びその利用
  • 熱電変換素子及び当該熱電変換素子を備えた熱電変換モジュール
  • 多結晶性マグネシウムシリサイド及びその利用
  • 電池装置、故障監視システム、及び電池の電圧出力方法
  • 熱電変換素子及び当該熱電変換素子を備えた熱電変換モジュール
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Books (11):
  • 計算科学を活用した熱電変換材料の研究開発動向
    株式会社シーエムシー・リサーチ 2022 ISBN:9784910581187
  • 環境発電ハンドブック
    株式会社エヌ・ティー・エス 2021 ISBN:9784860437480
  • スペース・コロニー 宇宙で暮らす方法(ブルーバックス)
    講談社 2021 ISBN:9784065235669
  • Thermoelectric energy conversion, Chap.2.16: Silicide materials: thermoelectric, mechanical properties, and durability for Mg-Si and Mn-Si
    Elsevier 2021 ISBN:9780128185353
  • サーマルデバイス〜新素材・新技術による熱の高度制御と高効率利用〜
    NTS 2019 ISBN:9784860436025
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Lectures and oral presentations  (184):
  • Thermoelectric properties of a-SrSi2 prepared by the Vertical Bridgman method
    (2023 International Union of Materials Research Society- International Conference in Asia (IUMRS-ICA) 2024)
  • Investigation of Group 13 Elements as potential candidates for p-type dopants in the narrow gap thermoelectric semiconductor α-SrSi2
    (The 40th International and 20th European Thermoelectric Conference 2024)
  • Thermoelectric Performance of n-type Mg<sub>2</sub>Si Grown by the Vertical Bridgman Method
    (Materials Research Meeting 2019 2019)
  • Refinement of the calculated power generation characteristics of a unileg-type Mg<sub>2</sub>Si thermoelectric module using thermal-electric analysis
    (Materials Research Meeting 2019 2019)
  • Waste Heat Recovery of Diesel Engine System using Thermoelectric Module
    (SAE Thermal Management Systems Symposium 2019)
more...
Education (2):
  • - 1995 Meiji University Graduate School, Division of Engineering
  • - 1990 Meiji University Faculty of Engineering
Professional career (1):
  • Doctor(Engineering) (Meiji University)
Work history (7):
  • 2012 - Tokyo University of Science Professor
  • 2006 - 2011 Tokyo University of Science Associate Professor
  • 1997 - 2001 Tokyo University of Science Research Associate
  • 2001 - Tokyo University of Science Lecturer
  • 1999 - 2000 Meiji University Part-time Lecturer
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Awards (11):
  • 2022/02/07 - 日本赤外線学会論文賞
  • 2013/05/15 - 2nd International Conference on Materials for Energy, Best Poster Award
  • 2012/05/18 - Symposium : Unconventional Thermoelectrics: from new materials to energy conversion devices, Best Poster Award
  • 2011/09/30 - 9 th European Conference on Thermoelectronics, Best Poster Award
  • 2011/07/20 - 30 th International Conference on Thermoelectronics, Best Poster Award
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