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Photocatalytic properties of ZnO powders synthesized by conventional and microwave-assisted solution combustion method

机译:通过常规和微波辅助溶液燃烧方法合成ZnO粉末的光催化性能

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摘要

Zinc oxide (ZnO) powders have been prepared by solution combustion synthesis method using conventional and microwave ignition routes. The effects of starting solution acidity on the combustion behavior, phase evolution, microstructure, optical properties and photocatalytic performance were investigated by thermal analysis, X-ray diffractometry, electron microscopy and diffuse reflectance spectrometry techniques. The chelated species in dried gels were predicted by theoretical calculations and confirmed by Fourier transform infrared spectroscopy. The combustion reaction rate increased with the increase of pH values. Single phase and well-crystalline ZnO powders were achieved by both of ignition methods regardless of pH values. The hexagonal particles (200-80 nm) formed by microwave ignition were larger than the spherical particles (60-40 nm) in conventional heating. Conventionally combusted ZnO powders exhibited higher photocatalytic activity under ultraviolet irradiation, due to their narrower band gap and smaller particle size.
机译:氧化锌(ZnO)粉末已通过常规和微波点火途径通过溶液燃烧合成方法制备。通过热分析,X射线衍射测定,电子显微镜,电子显微镜和漫反射光谱技术研究了起始溶液酸度对燃烧行为,相蒸变,微观结构,光学性能和光催化性能的影响。通过理论计算预测干燥凝胶中的螯合物质,并通过傅里叶变换红外光谱证实。燃烧反应速率随pH值的增加而增加。无论pH值如何,通过点火方法实现单相和良好的结晶ZnO粉末。通过微波点火形成的六边形颗粒(200-80nm)大于常规加热中的球形颗粒(60-40nm)。传统上燃烧的ZnO粉末在紫外线照射下表现出更高的光催化活性,由于它们较窄的带隙和更小的粒度。

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