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AuNPs Hybrid Black ZnO Nanorods Made by a Sol-Gel Method for Highly Sensitive Humidity Sensing

机译:溶胶-凝胶法制备的AuNPs杂色黑色ZnO纳米棒用于高灵敏度的湿度感测

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摘要

A highly sensitive self-powered humidity sensor has been realized from AuNPs hybrid black zinc oxide (ZnO) nanorods prepared through a sol-gel method. XRD pattern reveals that both ZnO and ZnO/AuNPs exhibit a wurtzite structure. ZnO/AuNPs nanorods grow in a vertical alignment, which possesses high uniformity and forms dense arrays with a smaller diameter than that of ZnO nanoparticles. All ZnO/AuNPs and pure black ZnO show lower band gap energy than the typically reported 3.34 eV of pure ZnO. Furthermore, the band gap of ZnO/AuNPs nanocomposites is effectively influenced by the amount of AuNPs. The humidity sensing tests clearly prove that all the ZnO/AuNPs humidity sensors exhibit much higher response than that of ZnO sensors, and the sensitivity of such ZnO/AuNPs nanorods (6 mL AuNPs) display a change three orders higher than that of pure ZnO with relative humidity (RH) ranging from 11% to 95% at room temperature. The response and recovery time of the ZnO/AuNPs are 5.6 s and 32.4 s, respectively. This study of the construction of semiconductoroble metal sensors provides a rational way to control the morphology of semiconductor nanomaterials and to design a humidity sensor with high performance.
机译:通过通过溶胶-凝胶法制备的AuNPs杂化黑色氧化锌(ZnO)纳米棒已经实现了高度灵敏的自供电湿度传感器。 XRD图谱表明ZnO和ZnO / AuNPs均显示纤锌矿结构。 ZnO / AuNPs纳米棒以垂直排列生长,具有很高的均匀性,并形成直径小于ZnO纳米颗粒的致密阵列。所有ZnO / AuNP和纯黑色ZnO的带隙能量均低于通常报道的3.34 eV的纯ZnO。此外,ZnO / AuNPs纳米复合材料的带隙受到AuNPs含量的有效影响。湿度感测测试清楚地证明,所有ZnO / AuNPs湿度传感器的响应都比ZnO传感器高得多,并且此类ZnO / AuNPs纳米棒(6 mL AuNPs)的灵敏度变化比纯ZnO高出3个数量级。室温下的相对湿度(RH)为11%至95%。 ZnO / AuNPs的响应时间和恢复时间分别为5.6 s和32.4 s。对半导体/贵金属传感器构造的研究为控制半导体纳米材料的形貌和设计高性能的湿度传感器提供了合理的方法。

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