Features of technological synthesis and properties of ZnO-Cd based materials for photocatalytic applications. Review

IF 0.9 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Physics and Chemistry of Solid State Pub Date : 2023-04-07 DOI:10.15330/pcss.24.2.219-234
R. I. Didus, D. Myroniuk, L. Myroniuk, A. Ievtushenko
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Abstract

In this review, the current state of ZnO-Cd based materials for photocatalytic applications is summarized. Relevant technological synthesis methods such as pulsed laser deposition, magnetron sputtering, electrodeposition, sol-gel, metalorganic chemical vapor deposition, evaporating, spray pyrolysis, reflux are considered, and recent developments in effective and reproducible synthesis technology of nano- and microstructured zinc oxide, doped with cadmium and solid solutions of Zn1‑xCdxO for photodecomposition of organic pollutant molecules are discussed. The synthesis technology and level of Cd doping has a significant effect on the structure and morphology of zinc oxide and, as a result, on the optical and photocatalytic properties. The figures of merit, the theoretical limitations and rational control of the concentration of the cadmium alloying impurity is necessary to create a material with balanced optical properties and photocatalytic activity. Lastly, the importance of doping ZnO by isovalent Cd impurity significantly improves its photocatalytic properties due to a narrowing of the band gap, a decrease in the rate of recombination of electron-hole pairs, which increases the efficiency of spatial charge separation, the formation of active oxide radicals and an increase in the specific surface area. Thus, ZnO-Cd based materials are the most promising photocatalytic materials for organic pollutants.
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光催化用ZnO-Cd基材料的工艺合成特点及性能。审查
本文综述了ZnO-Cd基光催化材料的研究现状。综合考虑了脉冲激光沉积、磁控溅射、电沉积、溶胶-凝胶、金属有机化学气相沉积、蒸发、喷雾热解、回流等相关技术合成方法,讨论了纳米和微结构氧化锌、镉掺杂氧化锌以及用于光分解有机污染物分子的Zn1‑xCdxO固溶体的有效、可重复合成技术的最新进展。Cd掺杂的合成工艺和水平对氧化锌的结构和形貌有显著影响,从而影响氧化锌的光学和光催化性能。为了制备光学性能和光催化活性平衡的材料,必须对镉合金杂质的性能、理论限制和浓度进行合理的控制。最后,通过等价Cd杂质掺杂ZnO的重要性,由于带隙的缩小,电子-空穴对的重组速率的降低,从而提高了空间电荷分离的效率,活性氧化自由基的形成和比表面积的增加,从而显著改善了ZnO的光催化性能。因此,ZnO-Cd基材料是最有前途的有机污染物光催化材料。
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CiteScore
1.70
自引率
14.30%
发文量
83
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