光催化氧化钨/氧化锡(〖WO〗_3/〖SnO〗_2)薄膜降解水污染物的光学特性

Victor Isahi, Christopher Maghanga, Mghendi Mwamburi, Onesmus Munyati, Sylvester Hatwaambo, Emmanuel Akoto, Wycliffe Isoe, Mir Waqas Alam
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引用次数: 0

摘要

水中的有机污染物一直是一个挑战,对人类健康构成重大风险。因此,消除这些污染物的研究一直在增加。光催化在含有机污染物的水处理中显示出令人难以置信的潜力,因为它价格合理且利用太阳能。氧化锡()作为水处理的光催化剂,由于其显著的性能,如;无毒,稳定性好。然而,它的宽带隙和一些电子和空穴在使用过程中重新组合的趋势被认为是影响其有效性的限制因素之一。因此,本研究旨在通过溶胶-凝胶技术掺杂不同比例的氧化钨()来优化薄膜,并研究掺杂对所制备薄膜光学和光催化性能的影响。结果表明,(1.5%wt.)和(1.5%wt.)的速率常数分别为0.00256 min-1和0.00519 min-1,对应的带隙分别为3.82和3.03 eV,表明掺杂提高了薄膜的光学吸光度,引起了薄膜吸收边缘的红移。这些结果表明它是光催化水处理的良好候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical Characterization of Photocatalytic Tungsten Oxide/Tin Oxide (〖WO〗_3/〖SnO〗_2) Thin Films for Use in Degradation of Water Pollutants
Organic pollutants in water have been a challenge and pose significant risks to human health. As a result, research efforts to eliminate these pollutants have been on the rise. Photocatalysis has shown incredible potential in water treatment containing organic pollutants since it is affordable and utilizes solar energy. Tin oxide ( ) has ardently been investigated as a photocatalyst for water treatment due to its remarkable properties such as; non-toxicity, and stability. However, its wide band gap and the tendency for some electrons and holes to recombine during its use have been cited to be among limiting factors affecting its effectiveness. This study, therefore, aimed to optimize thin films by doping it with varied proportions of Tungsten oxide ( ) using Sol-gel technique and investigating the effects of doping on the optical and photocatalytic properties of the prepared films. From the results, the calculated rate constants for and (1.5%wt.) were 0.00256 min-1 and 0.00519 min-1, respectively, and the corresponding band gaps were 3.82 and 3.03 eV, suggesting that doping improved the optical absorbance of the films and caused a red shift of the absorption edge of the films. These results show is a good candidate for photocatalytic water treatment.
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