Photo-oxygenation of water media using photoactive plasmonic nanocomposites.

A. S. Saratovskii, K. Senchik, A. Karavaeva, S. Evstropiev, N. Nikonorov
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Abstract

Plasmonic nanocomposites ZnO-Ag and ZnO-SnO2-Ag(AgCl) were prepared by the polymer-salt method, and their structure and morphology were studied using XRD and SEM analyses. It was found that the addition of photoactive inorganic nanocomposites ZnO-Ag and ZnO-SnO2-Ag(AgCl) in pure water significantly enhances the effectiveness of its disinfection and purification during UV treatment and provides the effective water oxygenation. Oxygen photogeneration under blue light (λex. = 405 nm) can be related to the plasmon-excitation processes in ZnO-SnO2-Ag(AgCl) composites. Prepared composites demonstrate antibacterial activity against both Gram-positive and Gram-negative bacteria. The increase of Ag content in ZnO-Ag and ZnO-SnO2-Ag(AgCl) composites significantly enhances their antibacterial activity.
利用光活性等离子体纳米复合材料对水介质进行光氧化。
采用聚合物-盐法制备了ZnO-Ag和ZnO-SnO2-Ag(AgCl)等离子体纳米复合材料,并利用XRD和SEM分析了其结构和形貌。研究发现,在纯水中添加光活性无机纳米复合材料ZnO-Ag和ZnO-SnO2-Ag(AgCl)可显著提高纯水在紫外线处理过程中的消毒和净化效果,并提供有效的水氧合。蓝光下的氧光生成(λex)。= 405 nm)可能与ZnO-SnO2-Ag(AgCl)复合材料中的等离子体激发过程有关。制备的复合材料对革兰氏阳性菌和革兰氏阴性菌均具有抗菌活性。ZnO-Ag和ZnO-SnO2-Ag(AgCl)复合材料中Ag含量的增加显著提高了其抗菌活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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