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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Fabricated novel g-C3N4/Mn doped ZnO nanocomposite as highly active photocatalyst for the disinfection of pathogens and degradation of the organic pollutants from wastewater under sunlight radiations
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Fabricated novel g-C3N4/Mn doped ZnO nanocomposite as highly active photocatalyst for the disinfection of pathogens and degradation of the organic pollutants from wastewater under sunlight radiations

机译:制造的新型G-C3N4 / MN掺杂ZnO纳米复合材料,作为高活性光催化剂,用于消毒病原体和阳光辐射下废水的有机污染物的降解

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摘要

The uncontrolled release of synthetic dyes in natural water sources and bacterial pollution has caused serious ecological and environmental threats in our daily lives. Economical and efficient materials for dye-degradation and pathogen disinfection are desperately perused for decades. The current study describes the facile fabrication of novel g-C3N4/Mn-ZnO nanocomposites via chemical co-precipitation approach and used, for the first time, to disinfect the polluted water and for methylene blue (MB) degradation. Surface morphology, structural analysis, elemental composition, particle size, chemical bonds, and optical properties of the prepared composites were fully investigated. Transmission electron microscopy revealed that Mn-ZnO nanoparticles (17-20 nm) were consistently disseminated on fabric like nanosheets of g-C3N4 to structure the hybrid g-C3N4 /Mn-ZnO nanocomposites. A superb photocatalytic degradation of MB and excellent antibacterial competency against Gramnegative and Gram-positive bacteria under sunlight irradiation was demonstrated by the fabricated nanocomposites. The radical scavengers and electron spin resonance (ESR) experiments revealed that the superoxide and hydroxyl radicals were the leading species liable for MB deterioration. Moreover, the nanocomposites exhibited tremendous stability with a consistently high degree of MB degradation for 6 successive catalytic cycles. The superior photocatalytic activity and the perfect antimicrobial propensity of the nanocomposites were essentially endorsed to the synergic effect of the interface developed between g-C3N4 nanosheets and Mn-ZnO nanoparticles. The fabricated nanocomposites can be an appropriate new photocatalyst for the disinfection of pathogens and removal of organic dye from the wastewater.
机译:天然水源中合成染料的失控释放和细菌污染已经在我们的日常生活中造成了严重的生态和环境威胁。用于染料降解和病原体消毒的经济高效的材料是几十年来孜孜以求的。目前的研究描述了通过化学共沉淀法简单制备新型g-C3N4/Mn-ZnO纳米复合材料,并首次用于污水消毒和亚甲基蓝(MB)降解。对制备的复合材料的表面形貌、结构分析、元素组成、粒度、化学键和光学性能进行了全面的研究。透射电子显微镜显示,Mn-ZnO纳米颗粒(17-20 nm)均匀地分散在g-C3N4的织物状纳米片上,以构建混合g-C3N4/Mn-ZnO纳米复合材料。所制备的纳米复合材料在阳光照射下对MB有极好的光催化降解作用,并对革兰氏阴性菌和革兰氏阳性菌有良好的抗菌能力。自由基清除剂和电子自旋共振(ESR)实验表明,超氧化物和羟基自由基是导致MB劣化的主要物种。此外,纳米复合材料表现出极大的稳定性,在连续6个催化循环中,MB的降解程度始终很高。g-C3N4纳米片和Mn-ZnO纳米颗粒之间形成的界面的协同效应从根本上证实了纳米复合材料优越的光催化活性和完美的抗菌性能。所制备的纳米复合材料可以作为一种新型的光催化剂,用于消毒病原体和去除废水中的有机染料。

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