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Light-induced pyroelectric effect as an effective approach for ultrafast ultraviolet nanosensing

机译:光致热释电效应是超快紫外纳米传感的有效方法

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摘要

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.
机译:氧化锌可能是有用的紫外线探测器材料。但是,响应时间较长会阻碍实际操作。在这里,通过设计和制造自供电的ZnO /钙钛矿异质结构紫外光电探测器,在纤锌矿型ZnO纳米线上的紫外线照射下产生的热电效应已被用作高效的光子传感有效方法。响应时间在上升沿从5.4μs缩短至53μμs,在下降沿从8.9μs改善至63μμs,幅度提高了五个数量级。比检测率和响应率均提高了322%。这项工作提供了一种新颖的设计,可以通过光自感应热释电效应在室温下实现超快的紫外线感应。新设计的超快自供电紫外线纳米传感器可在超快光学,非线性光学,光热检测,计算存储器和生物相容性光电探针中找到有前途的应用。

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