報道記事
日本経済新聞, 2026, visited: 2026.03.10.
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title = {東京科学大学など、横型熱電発電に有望な材料 高耐久化},
url = {https://www.nikkei.com/prime/tech-foresight/article/DGXZQOUC054RU0V00C26A3000000},
year = {2026},
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北海道新聞デジタル, 2026, visited: 2026.03.04.
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title = {水素吸蔵材料における負熱膨張現象の発見},
url = {https://www.hokkaido-np.co.jp/article/1282760/},
year = {2026},
date = {2026-03-04},
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日本経済新聞, 2024, visited: 2024.03.22.
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title = {熱電発電を無害で安価に 東工大が素材開発 普及に道},
url = {https://www.nikkei.com/article/DGXZQOUF210ED0R20C24A1000000/},
year = {2024},
date = {2024-03-22},
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現代化学 (東京化学同人), 2024, visited: 2024.02.20.
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title = {毒性元素を含まない、高効率の熱電材料},
url = {https://www.tkd-pbl.com/book/b10046427.html},
year = {2024},
date = {2024-02-20},
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booktitle = {現代化学},
volume = {636},
number = {3},
issue = {現代化学2024年3月号},
pages = {9–10},
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日本経済新聞 NIKKEI Tech Foresight, 2024, visited: 2024.01.17.
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title = {東工大など、廃熱利用向け熱電材料 非毒性で最高効率},
url = {https://www.nikkei.com/prime/tech-foresight/article/DGXZQOUC102R70Q4A110C2000000},
year = {2024},
date = {2024-01-17},
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MITテクノロジーレビュー, 2024, visited: 2024.01.15.
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title = {毒性元素を含まない熱電材料で過去最高の変換効率=東工大},
url = {https://www.technologyreview.jp/n/2024/01/15/326633/},
year = {2024},
date = {2024-01-15},
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A step on the road to better eco-friendly thermo-electrics
Electronics Weekly (UK), 2024, visited: 2024.01.11.
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title = {A step on the road to better eco-friendly thermo-electrics},
url = {https://www.electronicsweekly.com/news/research-news/a-step-on-the-road-to-better-eco-friendly-thermo-electrics-2024-01/},
year = {2024},
date = {2024-01-11},
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毒性元素を含まず過去最高の変換効率を示す 東工大研究Gが熱電材料を発見 バリウム・シリコン・酸素で組成
文教速報デジタル版, 2024, visited: 2024.01.05.
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title = {毒性元素を含まず過去最高の変換効率を示す 東工大研究Gが熱電材料を発見 バリウム・シリコン・酸素で組成},
url = {https://bunkyodezi.com/bunkyodezi/6996/},
year = {2024},
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第298回「熱を操る!サーマルマネージメントの最新技術」テレビ放送
BSフジ「ガリレオX」, 2023, visited: 2023.09.10.
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title = {第298回「熱を操る!サーマルマネージメントの最新技術」テレビ放送},
url = {https://www.web-wac.co.jp/program/galileo/%E7%86%B1%E3%82%92%E6%93%8D%E3%82%8B%EF%BC%81-%E3%82%B5%E3%83%BC%E3%83%9E%E3%83%AB%E3%83%9E%E3%83%8D%E3%82%B8%E3%83%A1%E3%83%B3%E3%83%88%E3%81%AE%E6%9C%80%E6%96%B0%E6%8A%80%E8%A1%93},
year = {2023},
date = {2023-09-10},
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Introduction of hydrogen produces eco-friendly thermoelectric oxides
MRS Bulletin Materials News Podcast, Materials Research Society, 2023, visited: 2023.08.14.
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title = {Introduction of hydrogen produces eco-friendly thermoelectric oxides},
url = {https://mrsbulletin.buzzsprout.com/244633/episodes/13402949-episode-11-introduction-of-hydrogen-produces-eco-friendly-thermoelectric-oxides},
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日本経済新聞 NIKKEI Tech Foresight, 2023, visited: 2023.05.10.
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title = {東工大、酸化物熱電材料の変換効率改善 低環境負荷},
url = {https://www.nikkei.com/prime/tech-foresight/article/DGXZQOUC080JF0Y3A500C2000000},
year = {2023},
date = {2023-05-10},
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次世代を担う研究に期待
電気新聞 (5面), 2023, visited: 2023.04.25.
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title = {次世代を担う研究に期待},
year = {2023},
date = {2023-04-25},
urldate = {2023-04-25},
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EE Times Japan, 2023, visited: 2023.04.21.
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title = {水素を活用、酸化物熱電材料の熱電変換効率を向上},
url = {https://eetimes.itmedia.co.jp/ee/articles/2304/21/news044.html},
year = {2023},
date = {2023-04-21},
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東工大、酸化物熱電材料への水素添加で熱電変換効率の向上に成功
マイナビニュース, 2023, visited: 2023.04.21.
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title = {東工大、酸化物熱電材料への水素添加で熱電変換効率の向上に成功},
url = {https://news.mynavi.jp/techplus/article/20230421-2659206/},
year = {2023},
date = {2023-04-21},
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軽元素の水素を添加する方法で、酸化物の熱電変換効率を向上させることに成功 東工大
fabcross for エンジニア, 2023, visited: 2023.04.20.
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title = {軽元素の水素を添加する方法で、酸化物の熱電変換効率を向上させることに成功 東工大},
year = {2023},
date = {2023-04-20},
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無毒の材料で熱電変換/東工大が開発、熱伝導率抑制
電気新聞, 2023, visited: 2023.04.20.
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title = {無毒の材料で熱電変換/東工大が開発、熱伝導率抑制},
year = {2023},
date = {2023-04-20},
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現代化学, 2022, visited: 2022.06.01.
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title = {廃熱を電気に変える素材},
url = {https://www.tkd-pbl.com/book/b606251.html},
year = {2022},
date = {2022-06-01},
urldate = {2022-06-01},
booktitle = {現代化学},
volume = {615},
number = {6},
pages = {9},
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JST サイエンスジャパン, 2022, visited: 2022.05.24.
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title = {Tokyo Institute of Technology succeeds in achieving 30 times higher thermoelectric conversion performance in tin selenide},
url = {https://sj.jst.go.jp/news/202205/n0524-01k.html},
year = {2022},
date = {2022-05-24},
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日経産業新聞, 2022, visited: 2022.04.14.
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title = {断熱と放熱、切り替わる材料},
url = {https://www.nikkei.com/article/DGXZQOUC042DA0U2A400C2000000/},
year = {2022},
date = {2022-04-14},
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日本経済新聞 オンライン, 2022, visited: 2022.04.14.
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title = {断熱と放熱が切り替わる材料 東工大が開発},
url = {https://www.nikkei.com/article/DGXZQOUC042DA0U2A400C2000000/},
year = {2022},
date = {2022-04-14},
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OPTRONICS ONLINE, 2022, visited: 2022.04.13.
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title = {東工大、温度で断熱と放熱を自在制御する材料開発},
url = {https://optronics-media.com/news/20220413/76935/},
year = {2022},
date = {2022-04-13},
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東工大、低温で断熱して高温で放熱する熱伝導を制御できる材料を開発
マイナビニュース, 2022, visited: 2022.04.03.
@media{nokey,
title = {東工大、低温で断熱して高温で放熱する熱伝導を制御できる材料を開発},
url = {https://news.mynavi.jp/techplus/article/20220404-2312562/},
year = {2022},
date = {2022-04-03},
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セレン化スズ多結晶体 熱電変換性能が30倍に 東工大が成功
科学新聞 (4面), 2022, visited: 2022.04.01.
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セレン化スズ多結晶体の熱電変換性能30倍、東工大が成功した意義
Yahoo! JAPAN ニュース, 2022, visited: 2022.03.25.
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title = {セレン化スズ多結晶体の熱電変換性能30倍、東工大が成功した意義},
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SnSe多結晶体の熱電変換性能30倍 東工大、テルル添加で成功
日刊工業新聞 (22面), 2022, visited: 2022.03.24.
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title = {SnSe多結晶体の熱電変換性能30倍 東工大、テルル添加で成功},
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