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载银纳米粒子/氧化铜纳米粒子的介孔硅纳米材料的催化还原有机污染物性能及其抗菌抗真菌活性。

Catalytic reduction of organic pollutants, antibacterial and antifungal activities of AgNPs@CuO nanoparticles-loaded mesoporous silica.

机构信息

Département de Génie Des Matériaux, Faculté de Chimie, Université Des Sciences Et de La Technologie Mohamed Boudiaf, BP 1505, El-Mnaouer, 31000, Oran, Algeria.

Laboratoire de Chimie Des Matériaux L.C.M, Université Oran1 Ahmed Ben Bella, BP 1524 El-Mnaouer, 31000, Oran, Algeria.

出版信息

Environ Sci Pollut Res Int. 2023 Mar;30(11):30855-30873. doi: 10.1007/s11356-022-24317-6. Epub 2022 Nov 28.

Abstract

In this work, the mesoporous silica MCM-41 was prepared by a hydrothermal method and then modified using silver and copper. The obtained samples were used as antibacterial/antifungal agents and as catalysts for the reduction of the following dyes: Methylene Blue (MB), Congo Red (CR), Methyl Orange (MO), and Orange G (OG). Several parameters affecting the reduction of dyes were investigated and discussed such as the catalyst nature, the initial concentration of the dye, the dye nature, the selectivity of the catalyst in a binary system as well as the catalyst reuse. The catalysts were characterized using XRD, nitrogen sorption measurements, XRF, FTIR, XPS, SEM/EDS, and TEM. XRD, XPS, and TEM analysis clearly showed that the calcination of copper- and silver-modified silica leads to the formation of well-dispersed CuO and AgNPs having sizes between 5 and 10 nm. As determined by XRF analysis, the content of silver nanoparticles was higher compared to CuO in all samples. It has been shown that the dye reduction is influenced by the size and the content of nanoparticles as well as by their dispersions. The catalytic activity was shown to be the highest for the Ag-Cu-MCM(0.05) catalyst with a rate constant of 0.114, 0.102, 0.093, and 0.056 s for MO, MB, CR, and OG dyes in the single-dye system, respectively. In the binary system containing MB/OG or MB/MO, the catalyst Ag-Cu-MCM(0.05) was more selective toward the MB dye. The reuse of the catalyst for three consecutive cycles showed higher MB conversion in a single system with an increase in reaction time. For antifungal and antibacterial properties, the application of calcined and uncalcined materials toward six different strains showed good results, but uncalcined materials showed the best results due to the synergistic effect between CuO and unreduced species Ag which are considered responsible for the antibacterial and antifungal action.

摘要

在这项工作中,采用水热法制备了介孔硅 MCM-41,然后用银和铜进行修饰。所得样品用作抗菌/抗真菌剂和以下染料还原的催化剂:亚甲蓝(MB)、刚果红(CR)、甲基橙(MO)和橙 G(OG)。研究并讨论了影响染料还原的多个参数,例如催化剂性质、染料初始浓度、染料性质、二元体系中催化剂的选择性以及催化剂的重复使用。使用 XRD、氮气吸附测量、XRF、FTIR、XPS、SEM/EDS 和 TEM 对催化剂进行了表征。XRD、XPS 和 TEM 分析清楚地表明,铜和银修饰的硅的煅烧导致形成尺寸在 5 到 10nm 之间的均匀分散的 CuO 和 AgNPs。通过 XRF 分析确定,与所有样品中的 CuO 相比,纳米银颗粒的含量更高。结果表明,染料还原受到纳米颗粒的尺寸和含量以及它们的分散性的影响。Ag-Cu-MCM(0.05)催化剂的催化活性最高,在单染料体系中,MO、MB、CR 和 OG 染料的速率常数分别为 0.114、0.102、0.093 和 0.056s。在含有 MB/OG 或 MB/MO 的二元体系中,Ag-Cu-MCM(0.05)催化剂对 MB 染料更具选择性。在单体系中重复使用催化剂三次,随着反应时间的增加,MB 的转化率更高。对于抗真菌和抗菌性能,煅烧和未煅烧材料对六种不同菌株的应用均显示出良好的效果,但未煅烧材料的效果最好,因为 CuO 和未还原的 Ag 物种之间的协同作用,这被认为是抗菌和抗真菌作用的原因。

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