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Eco-friendly conductive polymer-based nanocomposites, BiVO4/graphene oxide/polyaniline for excellent photocatalytic performance

机译:基于生态型导电聚合物的纳米复合材料,BIVO4 /石墨烯氧化物/聚苯胺,用于优异的光催化性能

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摘要

In this study, we describe the structure of bismuth vanadate (BiVO4)/graphene oxide/polyaniline (PANI) compound with exploited interfacial coupling, their use as visible-light photocatalysts and safety property. Thin graphene oxide sheets could completely cover BiVO(4)polyhedrons with vastly conductive polymer PANI through an evaporation-induced hydrothermal process. The enhanced surface adsorption outcome of GO, a huge improvement in the photoactivity of BiVO4, has been proved through the degradation of methylene blue (MB) and safranin O (SO) upon the covering of polyaniline. The improved photocatalytic activity is recognized for the development of well-defined BiVO4/GO/PANI interfaces which considerably increases the charge separation efficacy. Conversely, safety aspects are investigated for identifying the toxicity of samples on the different kinds of bacteria. Our study found that in the existence of every sample the bacteria could not be killed throughout the culture medium. Considering its ease of preparation and excellent performance, BiVO4/GO/PANI could be a promising, competitive and safe visible-light-driven photocatalyst in the field of environmental remediation.
机译:在本研究中,我们描述了钒酸盐(BiVO4)/石墨烯氧化物/聚苯胺(PANI)化合物的铋结构,其用作可见光光催化剂和安全性。薄的石墨烯氧化物片可以通过蒸发诱导的水热过程完全覆盖具有巨大导电的聚合物PANI的双体(4)多面体。通过在聚苯胺的覆盖物上,通过降解亚甲基蓝(MB)和Safranin O(SO)的降解,提高了GO的增强的表面吸附结果。识别出改善的光催化活性用于开发明确定义的BIVO4 / GO / PANI界面,其显着提高了电荷分离功效。相反,研究了安全方面,用于鉴定样品对不同种类的细菌的毒性。我们的研究发现,在每个样品的存在中,细菌不能在整个培养基中丧生。考虑到其易于准备和优异的性能,Bivo4 / Go / Pani可能是环境修复领域的有希望的,竞争和安全的可见光触发光催化剂。

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