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SnO2-microtube-assembled cloth for fully flexible self-powered photodetector nanosystems

机译:SnO2-microtube-assembled布完全灵活自供电的光电探测器纳米系统

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Integrating an energy conversion or storage device with photodetectors into a self-powered system provides a promising route to future devices aimed at reduced size, low weight and high flexibility. We reported here the fabrication of a fully flexible self-powered photodetector nanosystem by integrating a flexible SnO2-doth-based ultraviolet photodetector with a flexible SnO2-doth-based lithium-ion battery. The flexible SnO2-cloth-based ultraviolet photodetectors showed fast response to ultraviolet light with excellent flexibility and stability. Using SnO2-on-carbon-doth as the binder-free anode and commercial LiCoO2/AI foil as the cathode, a flexible full lithium-ion battery was assembled, exhibiting a reversible capacity of 550 mA h g~(-1) even after 60 cycles at a current density of 200 mA g~(-1) in a potential window of 2-3.8 V. When integrated with and driven by the flexible full battery, the fully flexible self-powered photodetector nanosystem exhibits comparable performance with an analogous externally powered device. Such an integrated nanosystem could serve as a wireless detecting system in large areas, as required in applications such as environmental sensing and biosensing.
机译:整合一个能量转换或存储设备与光电探测器自供电的系统未来的设备提供了一个有前途的途径旨在减少大小、低重量、高的灵活性。一个完全灵活的自供电的光电探测器综合集成灵活SnO2-doth-based紫外线的光电探测器灵活的SnO2-doth-based锂离子电池。灵活SnO2-cloth-based紫外线光电探测器显示快速响应以优异的灵活性和紫外线稳定。binder-free阳极和商业LiCoO2 / AI箔作为阴极,灵活的完整的锂离子电池组装,展示一个可逆的容量550毫安h g ~(1)即使60周期200毫安的电流密度g ~ (1)2 - 3.8 V的潜在窗口。由于灵活的全电池,全面灵活的自供电的光电探测器综合展览比较性能一个类似的外部动力设备。综合可以作为一个无线集成在大面积检测系统,根据需要环境遥感和等应用程序若。

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