Plasmon-enhanced self-powered GaN/ZnTe core/shell nanopillar array photodetector

被引:0
|
作者
Jianqi Dong
Dongqi Zhang
Yi Ma
Daotong You
Jinping Chen
Bin Liu
Xingfu Wang
Zengliang Shi
Chunxiang Xu
机构
[1] Southeast University,State Key Laboratory of Digital Medical Engineering, School of Biological Science and Medical Engineering
[2] Nanjing University,Jiangsu Provincial Key Laboratory of Advanced Photonic and Electronic Materials, National Laboratory of Solid State Microstructures, School of Electronic Science and Engineering
[3] Jinan University,Institute of Photonics Technology
[4] South China Normal University,Guangdong Engineering Research Center of Optoelectronic Functional Materials and Devices, Institute of Semiconductors
来源
Nano Research | 2024年 / 17卷
关键词
GaN/ZnTe core/shell; nanopillar array; self-power; ultraviolet/visible photodetector; plasmonic effect;
D O I
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中图分类号
学科分类号
摘要
Nanostructure photodetectors, as the core component of optoelectronic devices, are mainly focused on the precise preparation of mixed-component nano-heterostructures and the realization of zero power consumption devices. Herein, we successfully fabricated n-GaN/p-ZnTe core/shell nanopillar array and realized self-power ultraviolet/violet photodetection. The radial heterojunction nanodevice reveals high light-dark current ratio of 104 at 0 V bias, indicating effective carriers’ separation. And more, by integrating plasmonic effect, the responsivity and detectivity of the Au nanoparticles decorated device are increased from 3.85 to 148.83 mA/W and 4.45×1011 to 2.33×1012 Jones under 325 nm UV light irradiation. While the rise and the fall time are decreased 1.3 times and 6.8 times under 520 nm visible light irradiation at 0 V bias. The high photocurrent gain is derived from that the oscillating high-energy hot electrons in Au nanoparticles spontaneously inject into the ZnTe conduction band to involve the photodetection process. This work presents an effective route to prepare high-performance self-power photodetector and provides a promising blueprint to realize different functional photoelectronic devices based on core/shell nanostructure.
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页码:5569 / 5577
页数:8
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