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Flexible, thorn-like ZnO-multiwalled carbon nanotube hybrid paper for efficient ultraviolet sensing and photocatalyst applications

机译:灵活,thorn-like ZnO-multiwalled碳纳米管混合纸高效紫外线传感、光催化剂的应用

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摘要

We report fabrication of a flexible, thorn-like ZnO-multiwalled carbon nanotube (MWCNT) hybrid paper with high aspect ratio for efficient ultraviolet (UV) sensing and photocatalyst applications. The thorn-like ZnO-MWCNT hybrid paper was synthesized via atomic layer deposition (ALD) of a uniform ZnO thin film on the outside surface of the MWCNT followed by hydrothermal growth of ZnO branches. The hybrid paper achieved very high surface to volume ratio, which is favorable for photodetector and photocatalyst applications. A photodetector fabricated from the hybrid paper demonstrates a high sensitivity to UV light with a maximum photoresponsivity of 45.1 A W~(-1) at 375 nm, corresponding to an external quantum efficiency as high as 14927%. The rise time and fall time of the UV photodetector are 29 ms and 33 ms, respectively, indicating fast transient response characteristics for the device. The high photoresponsivity and fast transient response are attributed to efficient carrier transport and collection efficiency of the hybrid paper. Besides, the thorn-like ZnO-MWCNT hybrid paper demonstrates excellent photocatalytic performance under UV irradiation, enabling photo-degradation of organic dyes such as Rhodamine B (RhB) within 90 minutes, with good recyclability.
机译:我们报告的一个灵活的,thorn-likeZnO-multiwalled碳纳米管(MWCNT)混合论文对于高效高纵横比紫外线(UV)传感、光催化剂应用程序。论文通过原子层沉积合成(ALD)统一的氧化锌薄膜MWCNT表面热液紧随其后生长氧化锌分支。非常高的表面体积比,这是有利于光电探测器,光催化剂应用程序。混合纸演示了一个高灵敏度紫外线的最大photoresponsivity 45.1W ~(1)在375 nm,对应于外部量子效率高达14927%。时间和下降时间的紫外线光电探测器是29分别女士和女士33,表示快瞬态响应的特征设备。瞬态响应是由于高效航空运输和收集效率混合。ZnO-MWCNT混合纸展示了优秀在紫外光照射下的光催化性能启用;降解有机染料等罗丹明B (RhB)在90分钟,与好再循环能力。

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