异质结
纳米棒
材料科学
光电子学
光电探测器
光电效应
紫外线
化学浴沉积
偏压
带隙
电压
纳米技术
物理
量子力学
作者
Kai Chen,Chenran He,Daoyou Guo,Shunli Wang,Zhengwei Chen,Jingqin Shen,Peigang Li,Weihua Tang
标识
DOI:10.1016/j.jallcom.2018.04.219
摘要
Cu2O/GaOOH shell-core heterojunction nanorod arrays (NRAs) were constructed by coating Cu2O on GaOOH NRAs through a simple and economical chemical bath deposition route. The obtained GaOOH NRAs crystalized in orthorhombic structure, with diameter range of 80–200 nm and an average height of 1 μm. A p-n junction constructed with a p-type narrow bandgap Cu2O and a n-type wide bandgap GaOOH NRAs shows a broad photoresponse region ranging from 239 nm to 570 nm. The photodetector (PD) based on Cu2O/GaOOH heterojunction exhibited a photoresponsivity (Rλ) of 6.95 A/W and an external quantum efficiency (EQE) of 2361% under the illumination of 365 nm ultraviolet (UV) light with a light intensity of 1.4 mW/cm2 at a bias voltage of 0.5 V. What more interesting is that the PD still shown an obvious photoelectric response to 532 nm light with a very low bias voltage of 0.5 mV. Such low-voltage-worked feature of Cu2O/GaOOH PD can be attributed to the built-in electric field formed at the interface between Cu2O and GaOOH, indicating a potential application in low power devices.
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