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Flexible cellulose and ZnO hybrid nanocomposite and its UV sensing characteristics

机译:柔性纤维素与ZnO杂化纳米复合材料及其紫外传感特性

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摘要

This paper reports the synthesis and UV sensing characteristics of a cellulose and ZnO hybrid nanocomposite (CEZOHN) prepared by exploiting the synergetic effects of ZnO functionality and the renewability of cellulose. Vertically aligned ZnO nanorods were grown well on a flexible cellulose film by direct ZnO seeding and hydrothermal growing processes. The ZnO nanorods have the wurtzite structure and an aspect ratio of 9 ~ 11. Photoresponse of the prepared CEZOHN was evaluated by measuring photocurrent under UV illumination. CEZOHN shows bi-directional, linear and fast photoresponse as a function of UV intensity. Electrode materials, light sources, repeatability, durability and flexibility of the prepared CEZOHN were tested and the photocurrent generation mechanism is discussed. The silver nanowire coating used for electrodes on CEZOHN is compatible with a transparent UV sensor. The prepared CEZOHN is flexible, transparent and biocompatible, and hence can be used for flexible and wearable UV sensors.
机译:本文报道了通过利用ZnO的协同作用和纤维素的可再生性而制备的纤维素和ZnO杂化纳米复合材料(CEZOHN)的合成和紫外传感特性。通过直接ZnO播种和水热生长工艺,垂直排列的ZnO纳米棒在柔性纤维素膜上生长良好。 ZnO纳米棒具有纤锌矿结构,长径比为9〜11。通过在紫外线照射下测量光电流来评估制备的CEZOHN的光响应。 CEZOHN显示双向,线性和快速的光响应与紫外线强度的关系。测试了制备的CEZOHN的电极材料,光源,可重复性,耐久性和柔韧性,并讨论了光电流产生机理。用于CEZOHN上电极的银纳米线涂层与透明的紫外线传感器兼容。制备的CEZOHN具有柔韧性,透明性和生物相容性,因此可用于柔韧性和耐磨性的UV传感器。

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