Self-powered and broadband photodetectors based on graphene/ZnO/silicon triple junctions

A self-powered photodetector with ultrahigh sensitivity, fast photoresponse, and wide spectral detectivity covering from 1000 nm to 400 nm based on graphene/ZnO/Si triple junctions has been designed, fabricated, and demonstrated. In this device, graphene serves as a transparent electrode as well as...

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Veröffentlicht in:Applied physics letters 2016-08, Vol.109 (5)
Hauptverfasser: Cheng, Ching-Cheng, Zhan, Jun-Yu, Liao, Yu-Ming, Lin, Tai-Yuan, Hsieh, Ya-Ping, Chen, Yang-Fang
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Sprache:eng
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Zusammenfassung:A self-powered photodetector with ultrahigh sensitivity, fast photoresponse, and wide spectral detectivity covering from 1000 nm to 400 nm based on graphene/ZnO/Si triple junctions has been designed, fabricated, and demonstrated. In this device, graphene serves as a transparent electrode as well as an efficient collection layer for photogenerated carriers due to its excellent tunability of Fermi energy. The ZnO layer acts as an antireflection layer to trap the incident light and enhance the light absorption. Furthermore, the insertion of the ZnO layer in between graphene and Si layers can create build-in electric field at both graphene/ZnO and ZnO/Si interfaces, which can greatly enhance the charge separation of photogenerated electron and hole pairs. As a result, the sensitivity and response time can be significantly improved. It is believed that our methodology for achieving a high-performance self-powered photodetector based on an appropriate design of band alignment and optical parameters can be implemented to many other material systems, which can be used to generate unique optoelectronic devices for practical applications.
ISSN:0003-6951
1077-3118
DOI:10.1063/1.4960357