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Surface-plasmon-enhanced ultraviolet emission of Au-decorated ZnO structures for gas sensing and photocatalytic devices

机译:用于气体传感和光催化装置的Au装饰ZnO结构的表面等离子体增强紫外线

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摘要

Pure and Au-decorated sub-micrometer ZnO spheres were successfully grown on glass substrates by simple chemical bath deposition and photoreduction methods. The analysis of scanning electron microscopy (SEM) and transmission electron microscopy (TEM) images, energy-dispersive X-ray spectroscopy (EDS), UV–vis absorption, and photoluminescence (PL) spectra results were used to verify the incorporation of plasmonic Au nanoparticles (NPs) on the ZnO film. Time-resolved photoluminescence (TRPL) spectra indicated that a surface plasmonic effect exists with a fast rate of charge transfer from Au nanoparticles to the sub-micrometer ZnO sphere, which suggested the strong possibility of the use of the material for the design of efficient catalytic devices. The NO2 sensing ability of as-deposited ZnO films was investigated with different gas concentrations at an optimized sensing temperature of 120 °C. Surface decoration of plasmonic Au nanoparticles provided an enhanced sensitivity (141 times) with improved response (τRes = 9 s) and recovery time (τRec = 39 s). The enhanced gas sensing performance and photocatalytic degradation processes are suggested to be attributed to not only the surface plasmon resonance effect, but also due to a Schottky barrier between plasmonic Au and ZnO structures.
机译:通过简单的化学浴沉积和光电方法成功地在玻璃基板上成功生长了纯和Au装饰的亚微米ZnO球体。扫描电子显微镜(SEM)和透射电子显微镜(TEM)图像,能量分散X射线光谱(EDS),UV-Vis吸收和光致发光(PL)光谱结果的分析用于验证等离子体AU的掺入ZnO膜上的纳米颗粒(NPS)。时间分辨的光致发光(TRPL)光谱表明,表面等离子体效应具有从Au纳米颗粒到亚微米ZnO球体的快速电荷转移速率,这表明使用材料的强大可能性用于设计有效的催化剂设备。用不同的气体浓度在优化的感测温度为120℃的不同气体浓度下研究了沉积的ZnO膜的No2感测能力。等离子体Au纳米粒子的表面装饰提供了增强的灵敏度(141次),具有改善的响应(τres= 9 s)和恢复时间(τrec= 39s)。增强的气体感测性能和光降解过程建议归因于不仅在表面等离子体共振效应,而且还由于等离激元的Au和ZnO结构之间的肖特基势垒。

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