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新型 CoFeO@ZnO-CeO 三元纳米复合材料:使用山楂提取物的超声化学绿色合成、表征及其在催化和抗菌活性中的应用。

Novel CoFeO@ZnO-CeO ternary nanocomposite: Sonochemical green synthesis using Crataegus microphylla extract, characterization and their application in catalytic and antibacterial activities.

机构信息

Medical Toxicology and Drug Abuse Research Center (MTDRC), Birjand University of Medical Sciences, Birjand, Iran.

Department of Chemistry, Payame Noor University, P.O. BOX 19395-3697, Tehran, Iran.

出版信息

Bioorg Chem. 2020 Oct;103:104194. doi: 10.1016/j.bioorg.2020.104194. Epub 2020 Aug 27.

Abstract

In this study, CoFeO@ZnO-CeO magnetic nanocomposite (CoFe@Zn-Ce MNC) was successfully prepared by facile sonochemical method for the first time. CoFe@Zn-Ce MNC was obtained by green and cost-effective process in the presence of Crataegus microphylla (C. microphylla) fruit extract. Influence of some parameters like capping agents (C. microphylla, SDS and CTAB), sonication time (10, 30 and 60 min) and sonication power (40, 60 and 80 W) were studied to achieve optimum condition. The as-obtained products were characterized by FT-IR, FESEM, TEM, DRS, VSM, EDS, TGA and XRD analysis. Results showed that high magnetic properties (20.38 emug), 70-80 nm size and spherical morphology were unique characteristics of synthesized nanocomposite. Antibacterial activity of CoFe@Zn-Ce MNC was examined against E. coli, P. aeruginoss and S. aureus bacteria. Among theme, S. aureus as gram-positive bacteria showed excellent antibacterial activity. Furthermore, photocatalytic performance of the CoFe@Zn-Ce MNC was investigated by degradation of humic acid (HA) molecules under visible and UV light irradiations. The influence of morphology of products and incorporation of cerium oxide with CoFeO@ZnO on photocatalytic activity of CoFeO@ZnO was performed. After 100 min illumination, the decomposition of HA pollutant by magnetic nanocomposite were 97.2% and 72.4% under exposure of UV and visible light irradiations, respectively. Also, CoFe@Zn-Ce MNC demonstrated high stability in the cycling decomposition experiment after six times cycling runs.

摘要

在这项研究中,首次通过简便的超声化学方法成功制备了 CoFeO@ZnO-CeO 磁性纳米复合材料(CoFe@Zn-Ce MNC)。CoFe@Zn-Ce MNC 是通过在山杏(C. microphylla)果实提取物的存在下,通过绿色且具有成本效益的工艺获得的。研究了一些参数的影响,例如封端剂(山杏、SDS 和 CTAB)、超声时间(10、30 和 60 分钟)和超声功率(40、60 和 80 瓦),以达到最佳条件。通过 FT-IR、FESEM、TEM、DRS、VSM、EDS、TGA 和 XRD 分析对所获得的产物进行了表征。结果表明,高磁性能(20.38 emug)、70-80nm 尺寸和球形形态是合成纳米复合材料的独特特征。CoFe@Zn-Ce MNC 的抗菌活性通过对大肠杆菌、铜绿假单胞菌和金黄色葡萄球菌的抗菌活性进行了检测。在这些细菌中,革兰氏阳性菌金黄色葡萄球菌表现出优异的抗菌活性。此外,还通过在可见和紫外光照射下降解腐殖酸(HA)分子研究了 CoFe@Zn-Ce MNC 的光催化性能。研究了产物形态和 CoFeO@ZnO 中氧化铈的掺入对 CoFeO@ZnO 光催化活性的影响。在 100 分钟的光照下,磁性纳米复合材料在暴露于紫外光和可见光照射下,HA 污染物的分解率分别为 97.2%和 72.4%。此外,CoFe@Zn-Ce MNC 在六次循环分解实验后表现出高稳定性。

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