An efficient biosynthesis of novel ZnO/CuO nanocomposites using berberis vulgaris extract (ZnO/CuO@BVENCs) for enhanced photocatalytic degradation of pollution, antibacterial and antifungal activity

被引:7
|
作者
Yousefinia, Ali [1 ]
Khodadadi, Maryam [2 ]
Mortazavi-Derazkola, Sobhan [3 ]
机构
[1] Birjand Univ Med Sci, Student Res Comm, Birjand, Iran
[2] Birjand Univ Med Sci, Dept Environm Hlth Engn, Birjand, Iran
[3] Birjand Univ Med Sci, Med Toxicol & Drug Abuse Res Ctr MTDRC, Birjand, Iran
关键词
Green synthesis; CuO; ZnO; Antibacterial; Antifungal; Photocatalyst; GREEN SYNTHESIS; RHODAMINE-B; NANOPARTICLES; NANOSTRUCTURES; HETEROJUNCTION; ANTIOXIDANT; FABRICATION; BLUE; CU;
D O I
10.1016/j.eti.2023.103340
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
In this study, an environmentally-friendly method was employed to synthesize ZnO/CuO nanocomposites using berberis vulgaris extract, resulting in ZnO/CuO@BVE NCs. The structure and properties of the ZnO/CuO@BVE NCs were characterized using various analytical techniques including XRD, UV-DRS, FESEM, FT-IR, EDAX, and TEM. UV-DRS results highlighted a bandgap energy reduction from 3.11 eV to 2.93 eV due to CuO integration with ZnO. TEM images confirmed the nanocomposite size to be between 35-50 nm. To evaluate the photocatalytic effectiveness of the biosynthesized nanocomposites, rhodamine b (RhB) was used as a representative contaminant. We thoroughly investigated the influence of multiple variables such as dye concentration, nanocatalyst amount, light source, and pH on the photocatalytic degradation of RhB. Under optimized conditions (0.15 g/L nanocatalyst, pH 11, UV light, and 3 ppm pollutant concentration), a remarkable 97.3% RhB degradation efficiency was achieved. Additionally, the antibacterial properties of the ZnO/CuO@BVE NCs were tested against six ATCC strains. Notably, they exhibited strong antibacterial action, especially against K. pneumoniae and P. aeruginosa, with a minimum inhibitory concentration (MIC) as low as 62.5 & mu;g/mL. Furthermore, the nanocomposites demonstrated significant antifungal activity against C. albicans with an MIC of 31.2 & mu;g/mL. This research emphasizes the potential applications of ZnO/CuO@BVE NCs in environmental remediation and medical fields. & COPY; 2023 The Author(s). Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
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页数:14
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