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首页> 外文期刊>Applied Surface Science >Microwave assisted facile hydrothermal synthesis and characterization of zinc oxide flower grown on graphene oxide sheets for enhanced photodegradation of dyes
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Microwave assisted facile hydrothermal synthesis and characterization of zinc oxide flower grown on graphene oxide sheets for enhanced photodegradation of dyes

机译:微波辅助水热合成和表征在氧化石墨烯板上生长的氧化锌花,以增强染料的光降解

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摘要

Microwave assisted hydrothermal process of synthesis of ZnO-GO nanocomposite by using ZnCl2 and NaOH as precursors is being reported first time. In this investigation, a novel route to study on synthesis, interaction, kinetics and mechanism of hybrid zinc oxide-graphene oxide (ZnO-GO) nanocomposite using microwave assisted facile hydrothermal method has been reported. The results shows that the ZnO-GO nanocomposite exhibits an enhancement and acts as stable photo-response degradation performance of Brilliant Yellow under the UV light radiation better than pure GO and ZnO nanoparticles. The microwave exposure played a vital role in the synthesis process, it facilitates with well define crystalline structure, porosity and fine morphology of ZnO/GO nanocomposite. Different molar concentrations of ZnO precursors doped to GO sheets were been synthesized, characterized and their photodegradation performances were investigated. The optical studies by UV-vis and Photo Luminescence shows an increase in band gap of nanocomposite, which added an advantage in photodegradation performance. The in situ flower like ZnO nano particles are were densely decorated and anchored on the surfaces of graphene oxide sheets which aids in the enhancement of the surface area, adsorption, mass transfer of dyes and evolution of oxygen species. The nanocomposite having high surface area and micro/mesoporous in nature. This structure and morphology supports significantly in increasing photo catalytic performance legitimate to the efficient photosensitized electron injection and repressed electron recombination due to electron transfer process with GO as electron collector and transporter dependent on the proportion of GO in ZnO/GO composite. (C) 2015 Elsevier B.V. All rights reserved.
机译:首次报道了以ZnCl2和NaOH为前驱体的微波辅助水热法合成ZnO-GO纳米复合材料。在这项研究中,已报道了一种新颖的利用微波辅助水热法研究杂化氧化锌-氧化石墨烯(ZnO-GO)纳米复合材料的合成,相互作用,动力学和机理的新途径。结果表明,ZnO-GO纳米复合材料在紫外光辐射下比纯GO和ZnO纳米颗粒表现出增强作用,并具有稳定的艳黄色光响应降解性能。微波暴露在合成过程中起着至关重要的作用,它有助于清晰定义ZnO / GO纳米复合材料的晶体结构,孔隙率和精细形态。合成了掺杂在GO片材上的不同摩尔浓度的ZnO前驱体,对其进行了表征,并研究了其光降解性能。通过紫外可见光和光致发光的光学研究表明纳米复合材料的带隙增加,这增加了光降解性能的优势。将原位花朵状的ZnO纳米颗粒密集地装饰并固定在氧化石墨烯片的表面,这有助于增加表面积,吸附,染料的传质和释放氧。该纳米复合材料具有高表面积并且本质上是微/中等的。这种结构和形态极大地支持了光催化性能的提高,这与有效的光敏电子注入和受阻的电子复合有关,这归因于以GO作为电子收集器和传输剂的电子转移过程,取决于ZnO / GO复合材料中GO的比例。 (C)2015 Elsevier B.V.保留所有权利。

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