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- W2945005483 abstract "Abstract Herein, Sn 4+ ‐doped copper (I) iodide (CuI) is prepared via a facile, cost‐efficient solution process, and the properties of Sn 4+ ‐doped CuI, including morphology, crystalline phase, as well as optical and electrical properties, are investigated by varying the Sn 4+ concentration. And by constructing transparent Sn 4+ ‐CuI/ZnO hybrid UV photodetectors, the potential of Sn 4+ ‐CuI as a p‐type material for high‐performance photodetection is investigated. It is found that Sn 4+ doping has great effect on the morphology as the formation of Sn 4+ ‐CuI thin sheets is observed, and the resistivity of Sn 4+ ‐CuI could be tuned by controlling Sn 4+ addition. The Sn 4+ ‐CuI/ZnO hybrid photodetectors exhibit obviously enhanced photodetecting performance outperforming ZnO film and CuI/ZnO photodetectors by the same preparation method, including significantly improved on/off ratio, spectral responsivity, and shortened responsive time. The enhanced performance of Sn 4+ ‐CuI/ZnO hybrid photodetectors mainly arises from the formation of type‐II p‐Sn 4+ ‐CuI/n‐ZnO heterojunctions, and the better interface contact leads to higher carrier separation efficiency due to the existence of Sn 4+ ‐CuI thin sheets. And the improved performance is also related to the optimized resistivity of Sn 4+ ‐CuI. This study sheds light on the potential of doped CuI toward transparent, high‐performance photodetectors in the future." @default.
- W2945005483 created "2019-05-29" @default.
- W2945005483 creator A5013863926 @default.
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- W2945005483 date "2019-05-20" @default.
- W2945005483 modified "2023-10-15" @default.
- W2945005483 title "Solution‐Processed Transparent Sn <sup>4+</sup> ‐Doped CuI Hybrid Photodetectors with Enhanced Performances" @default.
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- W2945005483 doi "https://doi.org/10.1002/admi.201900669" @default.
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