Influence of zinc oxide morphology on its photocatalytic properties

IF 0.4 Q4 PHYSICS, MULTIDISCIPLINARY Bulletin of the University of Karaganda-Physics Pub Date : 2023-06-30 DOI:10.31489/2023ph2/34-45
D. Tolubayeva, L. Gritsenko, Y. Kedruk, K.K. Mustafina, M. Aitzhanov, Kh.A. Abdullin
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Abstract

The rapid development of industry, in addition to the positive impact, has led to environmental problems. The release of polluting waste containing substances such as dyes, pesticides, heavy metals and pharmaceutical waste leads to contamination of water reservoirs, that has a negative impact on humans and aquatic organisms. In this regard, the development of an inexpensive, effective, environmentally friendly method of waste water treatment from organic pollutants is an urgent research priority. Zinc oxide (ZnO) is one of the most active semiconductor photocatalysts. In this paper, the influence of the morphology of nanostructured zinc oxide synthesized by effective methods on photocatalytic properties with respect to the rhodamine-B dye (RhB) was investigated, and the influence of the length-to-thickness ratio (aspect ratio AR) of ZnO samples on its structural and optical properties was studied. The results of the study showed that an increase in the annealing temperature of zinc acetate in the atmosphere leads to an increase in the size of zinc oxide crystallites, while an increase in the concentration of alkali in the growth solution (synthesis of ZnO by chemical deposition from 0.4 M to 0.7 M) makes it possible to synthesize thinner extended 2D plates. It is shown that an increase in the AR value of the synthesized samples makes it possible to increase their photocatalytic activity.
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氧化锌形态对其光催化性能的影响
工业的快速发展,除了带来积极的影响外,也引发了环境问题。含有染料、农药、重金属和医药废物等物质的污染废物的释放会导致水库受到污染,对人类和水生生物产生负面影响。在这方面,开发一种廉价、有效、环保的有机污染物废水处理方法是当务之急。氧化锌(ZnO)是最具活性的半导体光催化剂之一。本文研究了采用有效方法合成的纳米氧化锌的形貌对罗丹明-B染料(RhB)光催化性能的影响,并研究了ZnO样品的长厚比(纵横比AR)对其结构和光学性能的影响。研究结果表明,乙酸锌在大气中退火温度的升高导致氧化锌晶粒尺寸的增加,而生长溶液中碱浓度的增加(通过化学沉积从0.4M合成ZnO)使合成更薄的延伸2D板成为可能。结果表明,合成样品的AR值的增加使其光催化活性的提高成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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