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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Multifunctional ZnWO4 nanoparticles for photocatalytic removal of pollutants and disinfection of bacteria
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Multifunctional ZnWO4 nanoparticles for photocatalytic removal of pollutants and disinfection of bacteria

机译:用于光催化除去污染物和细菌消毒的多功能ZnWO4纳米粒子

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Herein, ZnWO4 nanoparticles (NPS) with controllable size were synthesized by a facile solvothermal method via changing EG concentration in the solvent. The physicochemical properties of ZnWO4 NPS were characterized by XRD, TEM, EDS, BET, XPS, UV-vis DRS, PL and photocurrent. The results shown that the EG concentration has a great influence on the morphology, size and crystallinity of ZnWO4 NPS. On the one hand, the photocatalytic activity of ZnWO4-EG62.5 was obviously better than that of ZnWO4-EGO in the removal of hazardous pollutants including Cr6+, MB, RhB and MO by 71.4, 33.3, 13.5 and 21.3 %, respectively. Moreover, ZnWO4-EG62.5 displayed excellent photocatalytic stability for Cr6+ reduction. The ZnWO4-EG75, on the other hand, exhibited the best antibacterial activity to Bacillus subtilis and Vibrio alginolyticus, and the maximal inhibition zone area of Bacillus subtilis and Vibrio alginolyticus over ZnWO4-EG75 was 3.4 and 6.8 times than that of ZnWO4-EGO, respectively. Our work indicated that ZnWO4 NPS presented potential future application in water treatment and marine antifouling, and it is a feasible approach to enhance the photocatalytic and antibacterial performance of semiconductor NPs by controlling its size and crystallinity.
机译:这里,通过在溶剂中的浓度通过改变例如浓度,通过容量溶剂热法合成具有可控尺寸的ZnWO4纳米颗粒(NPS)。 XRD,TEM,EDS,BET,XPS,UV-VIS DRS,PL和光电流的特征在于ZnWO4 NP的物理化学性质。结果表明,例如浓度对ZnWO4 NPS的形态,大小和结晶度产生了很大影响。一方面,ZnWO4-EG62.5的光催化活性明显优于Znwo4-Ego的光催化活性,以除去危险污染物,包括Cr6 +,Mb,rHB和Mo的危险污染物分别分别为71.4,33.3,13.5和21.3%。此外,ZnWO4-EG62.5显示出优异的CR6 +降低的光催化稳定性。另一方面,ZnWO4-EG75向芽孢杆菌和藻杆菌和藻氨酸的最佳抗菌活性表现出了最佳的抗菌活性,并且枯草芽孢杆菌和血管杆菌的最大抑制区面积与ZnWO4-EG75上的苏杆菌和血管族溶血性比Znwo4-Ego的3.4和6.8倍,分别。我们的工作表明,Znwo4 NPS在水处理和海洋防污中提出了潜在的未来应用,并且是通过控制其尺寸和结晶度来增强半导体NP的光催化和抗菌性能的可行方法。

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