Performance Enhancement of ZnO UV Photodetectors by Surface Plasmons

Surface plasmons, a unique property of metal nanoparticles, have been widely applied to enhance the performance of optical and electrical devices. In this study, a high quality zinc oxide (ZnO) thin film was grown on a quartz substrate by a radio frequency magnetron sputtering technique, and a metal...

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Veröffentlicht in:ACS applied materials & interfaces 2014-02, Vol.6 (3), p.2162-2166
Hauptverfasser: Tian, Chunguang, Jiang, Dayong, Li, Baozeng, Lin, Jingquan, Zhao, Yajun, Yuan, Wenxiang, Zhao, Jianxun, Liang, Qingcheng, Gao, Shang, Hou, Jianhua, Qin, Jieming
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container_issue 3
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container_title ACS applied materials & interfaces
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creator Tian, Chunguang
Jiang, Dayong
Li, Baozeng
Lin, Jingquan
Zhao, Yajun
Yuan, Wenxiang
Zhao, Jianxun
Liang, Qingcheng
Gao, Shang
Hou, Jianhua
Qin, Jieming
description Surface plasmons, a unique property of metal nanoparticles, have been widely applied to enhance the performance of optical and electrical devices. In this study, a high quality zinc oxide (ZnO) thin film was grown on a quartz substrate by a radio frequency magnetron sputtering technique, and a metal–semiconductor–metal structured ultraviolet detector was prepared on the ZnO film. The responsivity of the photodetector was enhanced from 0.836 to 1.306 A/W by sputtering metal (Pt) nanoparticles on the surface of the device. In addition, the absorption of the ZnO thin film was enhanced partly in the ultraviolet band. It is revealed that Pt nanoparticles play a key role in enhancing the performance of the photodetectors, where surface plasma resonance occurs.
doi_str_mv 10.1021/am405292p
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title Performance Enhancement of ZnO UV Photodetectors by Surface Plasmons
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