纳米氧化锌和表面改性氧化锌与氧化石墨沉积,以提高催化活性

K. M. Reddy, Chhoker Anmol, Sharma Aditya
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引用次数: 0

摘要

制备了氧化锌纳米粒子,并以氧化石墨为碳材料对氧化锌进行了表面改性。通过PXRD、FT-IR和uv -可见分析对合成材料进行了表征。该材料具有良好的光学性能和结构性能,有利于光催化降解研究。用氧化锌和氧化石墨在光照下降解甲基橙溶液。溶胶-凝胶法制备的材料对甲基橙的光催化活性有增强的作用。研究了氧化石墨的最佳负载量。对增强光催化进行了详细的研究。该研究为光催化降解有机污染物提供了广阔的应用前景。在本工作中,作者加入了新的氧化锌材料。ZnO表面沉积了氧化石墨烯(rGO)。半导体材料的复合材料在降解研究中表现出更好的光响应。这种组合的使用是一项新的研究,其结果反映了半导体材料中C、N、F、P等P块元素的修饰,增强了半导体介导材料的光催化应用,在光催化中得到了广泛的应用。对ZnO和rGO的PXRD分析表明,ZnO的结晶度较好,而rGO沉积后,由于主要基材半导体的重叠而失去结晶度,这解释了所用材料的新的催化和重组效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nano ZNO and surface modification ZNO with graphite oxide deposition to enhance the catalytic activity
Preparation of ZnO nanoparticles and surface modification ZnO with the carbon material graphite oxide, were synthesized. The synthesized materials were characterized by PXRD, FT-IR, and UV-visible analysis. The materials show better optical and structural properties, which are beneficial in the photocatalytic degradation studies. Under light, zinc oxide and graphite oxide were used to degrade the methyl orange solution. The prepared materials by sol-gel preparation showed enhanced catalytic activity in the photocatalytic activity of methyl orange. An optimal loading content of graphite oxide was investigated. The enhanced photocatalysis was studied in detail. The study provides a promising application for the photocatalytic degradation of organic pollutants in photocatalysis. In the present work, the authors included the new novel materials of ZnO. The ZnO is modified with the surface deposits of rGO. The combined materials of semiconductor materials show a better response to light for the degradation studies. The use of such a combination is a new study and the results reflect the modification of semiconductor materials in the p-block elements such as C, N, F, P and so on for the enhanced photocatalytic applications of semiconductor mediated materials, which are widely used in photocatalysis. The PXRD analysis of ZnO and rGO shows better crystallinity in the case of ZnO, whereas after the deposition of rGO, crystallinity is lost due to the overlap of the main base material semiconductors, which explains the new catalytic and recombination effects of the materials used.
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