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Photocatalytic activity of ZnO nanodisks in degradation of Rhodamine B and Bromocresol Green under UV light exposure

机译:紫外线曝光下罗达胺B和溴甲酚绿壤降解ZnO纳米缺失的光催化活性

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Semiconductor-based photocatalyst is an alternative approach for wastewater treatment. The effectiveness of semiconductor nanoparticles to eliminate textile dye substances in the contaminant water has been widely studied in the last decade. This work discusses the photocatalytic activities of ZnO nanodisks by using different dye substance (rhodamine B, RhB and bromocresol green, BCG) under UV exposure. ZnO nanodisks were successfully synthesized through solution precipitation method. The formation of ZnO in hexagonal nanodisks structure was confirmed by XRD, FESEM and EDX analysis. The result showed that the photodegradation efficiency of BCG dye is higher than RhB dye under 75 min of UV irradiation. This could be explained by the dye molecular structure as BCG dyes containing more hydroxyl groups (-OH) than RhB dyes.
机译:基于半导体的光催化剂是废水处理的替代方法。半导体纳米粒子消除污染物中纺织染料物质的有效性已在过去十年中被广泛研究。本作品通过使用UV暴露的不同染料物质(Rhodamine B,RHB和溴甲酰胺绿,BCG)讨论了ZnO纳米缺失的光催化活性。通过溶液沉淀法成功地合成了ZnO纳米缺失。通过XRD,FESEM和EDX分析证实了六方纳米纳米D型结构中ZnO的形成。结果表明,在紫外线辐射的75分钟内,BCG染料的光降解效率高于RHB染料。这可以通过染料分子结构来解释,作为含有比rHB染料更多的羟基(-OH)的BCG染料。

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