响应度
紫外线
超短脉冲
光电子学
材料科学
热电性
纳米传感器
纤锌矿晶体结构
紫外线
光电探测器
光学
纳米技术
铁电性
激光器
物理
锌
电介质
冶金
作者
Zhaona Wang,Ruomeng Yu,Caofeng Pan,Zhaoling Li,Jin Yang,Yi Fang,Zhong Lin Wang
摘要
Abstract Zinc oxide is potentially a useful material for ultraviolet detectors; however, a relatively long response time hinders practical implementation. Here by designing and fabricating a self-powered ZnO/perovskite-heterostructured ultraviolet photodetector, the pyroelectric effect, induced in wurtzite ZnO nanowires on ultraviolet illumination, has been utilized as an effective approach for high-performance photon sensing. The response time is improved from 5.4 s to 53 μs at the rising edge, and 8.9 s to 63 μs at the falling edge, with an enhancement of five orders in magnitudes. The specific detectivity and the responsivity are both enhanced by 322%. This work provides a novel design to achieve ultrafast ultraviolet sensing at room temperature via light-self-induced pyroelectric effect. The newly designed ultrafast self-powered ultraviolet nanosensors may find promising applications in ultrafast optics, nonlinear optics, optothermal detections, computational memories and biocompatible optoelectronic probes.
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