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マイクロ波誘起プラズマによる酸化チタンの高速ナノ表面改質と高活性光触媒の開発
https://nitech.repo.nii.ac.jp/records/6817
https://nitech.repo.nii.ac.jp/records/68171b6649bc-787f-4bd5-86aa-193aea79e016
名前 / ファイル | ライセンス | アクション |
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本文_fulltext (1.3 MB)
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Item type | 紀要論文 / Departmental Bulletin Paper_04(1) | |||||
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公開日 | 2021-10-05 | |||||
タイトル | ||||||
タイトル | マイクロ波誘起プラズマによる酸化チタンの高速ナノ表面改質と高活性光触媒の開発 | |||||
言語 | ||||||
言語 | jpn | |||||
資源タイプ | ||||||
資源タイプ識別子 | http://purl.org/coar/resource_type/c_6501 | |||||
資源タイプ | departmental bulletin paper | |||||
その他(別言語等)のタイトル | ||||||
その他のタイトル | Rapid Nanosurface Modification of Titanium Dioxide by Microwave Induced Plasma Towards Highly Efficient Photocatalyst | |||||
著者 |
加藤, 邦彦
× 加藤, 邦彦× 辛, 韵子× 白井, 孝 |
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著者別名 | ||||||
姓名 | Shirai, Takashi | |||||
言語 | en | |||||
姓名 | 白井, 孝 | |||||
言語 | ja | |||||
姓名 | シライ, タカシ | |||||
言語 | ja-Kana | |||||
書誌情報 |
名古屋工業大学先進セラミックス研究センター年報 = Annual report Advanced Ceramics Research Center Nagoya Institute of Technology 巻 9, p. 11-15, 発行日 2021-07-31 |
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出版者 | ||||||
出版者 | 名古屋工業大学先進セラミックス研究センター | |||||
ISSN | ||||||
収録物識別子タイプ | ISSN | |||||
収録物識別子 | 21876738 | |||||
書誌レコードID | ||||||
収録物識別子タイプ | NCID | |||||
収録物識別子 | AA12617342 | |||||
著者版フラグ | ||||||
出版タイプ | VoR | |||||
出版タイプResource | http://purl.org/coar/version/c_970fb48d4fbd8a85 | |||||
内容記述 | ||||||
内容記述タイプ | Other | |||||
内容記述 | In this article, we review our recent paper entitled “TiO₂ with super narrow bandgap achieved in one-step single-mode magnetic microwave induced plasma treatment”, which has been published in Scripta Materialia 177(2020)157- 161. We demonstrate a novel nanotechnology for rapid surface modification of TiO₂ by using microwave induced non-hydrogen plasmas towards highly efficient visible-light photocatalyst. The synthesized TiO₂-TiOx core-shell particle shows the super narrow bandgap(1.1 eV~)in addition to the outstanding light absorbing capacity ranging from UV to NIR. Moreover, the surface chemical composition of TiOx is precisely controlled in a wide region of 1.19 < x < 1.92. The select ively Ti³+ self-doping on TiO₂ surface with highly thermal/chemical stability facilitates the spatial photo-excited carrier separation, resulting in the significant enhancement of photocatalytic performance for degradation of azo-dye water pollutant under visible light. | |||||
キーワード | ||||||
言語 | en | |||||
主題Scheme | Other | |||||
主題 | Titanium dioxide | |||||
キーワード | ||||||
言語 | en | |||||
主題Scheme | Other | |||||
主題 | Surface modification | |||||
キーワード | ||||||
言語 | en | |||||
主題Scheme | Other | |||||
主題 | Photocatalyst | |||||
キーワード | ||||||
言語 | en | |||||
主題Scheme | Other | |||||
主題 | Microwave plasma | |||||
フォーマット | ||||||
内容記述タイプ | Other | |||||
内容記述 | application/pdf | |||||
見出し | ||||||
大見出し | <解説> | |||||
言語 | ja | |||||
見出し | ||||||
大見出し | <Review> | |||||
言語 | en |