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半導体量子ドット蛍光体の合成技術と蛍光センシング応用《若手研究者の紹介》
https://doi.org/10.24561/00014645
https://doi.org/10.24561/0001464553a0156f-831f-4a92-9ed3-bb5652ae4dd0
名前 / ファイル | ライセンス | アクション |
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KY-AA12504266-05-04.pdf (696.4 kB)
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Item type | 紀要論文 / Departmental Bulletin Paper(1) | |||||
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公開日 | 2015-01-06 | |||||
タイトル | ||||||
タイトル | 半導体量子ドット蛍光体の合成技術と蛍光センシング応用《若手研究者の紹介》 | |||||
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 | |||||
ID登録 | ||||||
ID登録 | 10.24561/00014645 | |||||
ID登録タイプ | JaLC | |||||
タイトル(別言語) | ||||||
その他のタイトル | Synthesis of Semiconductor Quantum Dot Phosphor and Its Application to Fluorescence Sensing | |||||
著者 |
福田, 武司
× 福田, 武司× 鈴木, 美穂 |
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著者 ローマ字 | ||||||
FUKUDA Takeshi | ||||||
著者 ローマ字 | ||||||
SUZUKI, Miho | ||||||
著者 所属 | ||||||
埼玉大学大学院理工学研究科物質科学部門 | ||||||
著者 所属 | ||||||
埼玉大学大学院理工学研究科物質科学部門 | ||||||
著者 所属(別言語) | ||||||
Department of Functional Materials Science, Graduate School of Science and Engineering, Saitama University | ||||||
著者 所属(別言語) | ||||||
Department of Functional Materials Science, Graduate School of Science and Engineering, Saitama University | ||||||
書誌情報 |
CACS FORUM 巻 5, p. 18-21, 発行日 2014 |
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年月次 | ||||||
2014 | ||||||
出版者名 | ||||||
出版者 | 埼玉大学研究機構科学分析支援センター | |||||
出版者名(別言語) | ||||||
出版者 | Comprehensive Analysis Center for Science, Saitama University | |||||
概要 | ||||||
内容記述タイプ | Other | |||||
内容記述 | In recent years, several types of semiconductor quantum dots (QDs) have been investigated as phosphors due to their specific optical characteristics such as bright fluorescence, wavelength controllability, and high stability. In this manuscript, we demonstrated synthesis process of InP/ZnS QDs and their application for fluorescence bio-imaging sensing. The InP/ZnS QDs generate various fluorescence spectra by changing the diameter due to the quantum confinement effect, and the wavelength was ranged from 536 (green) to 627 nm (red). The maximum fluorescence quantum yield was 49.2 % for the InP/ZnS QDs dispersed in the pure water. In addition, we also achieved fluorescence type pH sensor containing the InP/ZnS QD and the organic dye, which has the pH-sensitive fluorescence intensity. The fluorescence intensity ratio (InP/ZnS QD/organic dye) linearly increased with increasing pH, and this indicates that the pH can be estimated by measuring the fluorescence spectrum. | |||||
版 | ||||||
[出版社版] | ||||||
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 | |||||
資源タイプ | ||||||
内容記述タイプ | Other | |||||
内容記述 | text | |||||
フォーマット | ||||||
内容記述タイプ | Other | |||||
内容記述 | application/pdf | |||||
作成日 | ||||||
日付 | 2015-01-06 | |||||
日付タイプ | Created | |||||
アイテムID | ||||||
KY-AA12504266-05-04 |