玫瑰花瓣绿色合成锰、铜、锌三金属氧化物及其抑菌活性

S. S. Gillani, S. Khan, R. Nazir, A. Qurashi
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引用次数: 0

摘要

采用简单、经济、环保、无毒的绿色工艺合成了CuO、ZnO和MnO混合金属氧化物纳米颗粒。在绿色合成方法中,以玫瑰花瓣提取物作为还原和封盖剂,以盐溶液(CuCl2, MnCl2和ZnSO4)作为前驱体,形成混合金属氧化物(CuO, ZnO, MnO) NPs。利用紫外可见光谱和红外光谱对混合金属氧化物(CuO, ZnO, MnO) NPs进行了分析,其最大吸光度在280 ~ 370 nm范围内。红外光谱中出现的特殊峰证实了混合金属氧化物纳米颗粒的合成。采用圆盘扩散法和孔扩散法研究了混合金属氧化物(CuO、ZnO、MnO) NPs的抑菌活性。混合金属氧化物(CuO、ZnO、MnO) NPs对大肠杆菌、白色念珠菌、月曲菌、黑曲霉和相似毛癣菌均有抑菌活性。因此,这些混合金属氧化物(CuO, ZnO, MnO) NPs可以有效地用于制药领域。关键词:抗真菌,抗菌,绿色合成,混合金属氧化物纳米颗粒(MONPs),玫瑰花瓣提取物
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Green Synthesis of Trimetallic Oxides of Mn, Cu, Zn Using Rose Petals and their Antimicrobial Activity
Mixed metal oxides (CuO, ZnO, and MnO) nanoparticles (NPs) were synthesized by the green process which is simple, cost-effective, eco-friendly, and non-toxic. In the green synthesis method, rose petals extracts were used as a reducing and capping agent while salt solutions (CuCl2, MnCl2, and ZnSO4) were used as a precursor that lead to the formation of mixed metal oxides (CuO, ZnO, MnO) NPs. UV-Visible and FTIR spectroscopy were used for the analysis of mixed metal oxides (CuO, ZnO, MnO) NPs, which showed maximum absorbance in the range of 280 to 370 nm. The presence of particular peaks in FTIR verified the synthesis of mixed metal oxide nanoparticles. The antimicrobial and antifungal activities of mixed metal oxides (CuO, ZnO, MnO) NPs were carried out by the disc diffusion method and well diffusion method. Mixed metal oxides (CuO, ZnO, MnO) NPs showed antimicrobial activity against Escherichia coli and antifungal activity against Candida albicans, Curvularia lunata, Aspergillus niger, and Trichophyton simii. So, these mixed metal oxides (CuO, ZnO, MnO) NPs can be effective in the pharmaceutical sector. Keywords: antifungal, antimicrobial, green synthesis, mixed metal oxides nanoparticles (MONPs), rose petals extracts Copyright (c) The Authors
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