通过简便的微波燃烧策略揭示稀土掺杂剂在金属钼酸盐纳米复合材料中的作用及其对抗菌活性的影响

Abdul Samad Shameem, Mohan Uma Priya, Vadivel Siva, Anbazhagan Murugan, Krishnasamy Padmavathi, Abdullah G. Al-Sehemi
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引用次数: 0

摘要

开发一种具有抗菌性能的坚固材料,一直是降低与医疗保健有关的感染风险的有效策略,尤其是在医疗设备和接触表面方面。钼基化合物因其独特的特性而备受青睐。本研究采用简便的微波燃烧法制备了一系列未掺杂和 5 % 稀土(Ce 和 La)掺杂金属(Ni、Co 和 Bi)的钼酸盐纳米复合材料,并对其进行了表征。本研究探讨了掺杂剂对晶体结构和形貌的影响,以及它们对抗菌性能的影响。所有样品的紫外可见吸收光谱都显示出 280 至 430 纳米之间的宽吸收带。用琼脂扩散法检测了制备的纳米复合材料对三种革兰氏阳性菌和两种革兰氏阴性菌的抗菌性能,结果表明,除了 5 % Ce-NiMoO4 纳米复合材料(仅对革兰氏阳性菌具有抗菌活性)和 5 % La-NiMoO4 纳米复合材料(无抗菌活性)外,其他样品均具有良好的杀菌效果。这项工作为生物材料领域提供了一条新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unveiling the role of rare earth dopant in metal molybdate nanocomposites via facile microwave-combustion strategy and their effect on antibacterial activity
Developing a robust material holding antimicrobial assets has been an efficient strategy for reducing the risk of infections related to healthcare, significantly with medical devices and touch surfaces. Molybdenum-based compounds have drawn momentous attraction because of their unique characteristics. A series of undoped and 5 % rare earth (Ce & La) doped metal (Ni, Co & Bi) molybdate nanocomposites have been prepared by facile microwave combustion method and characterized. The present study investigates the effect of dopants on crystal structure and morphology, and their impact on anti-bacterial properties is noticed. The UV–Vis. absorption spectra of all samples show a broad absorption band between 280 and 430 nm. The antibacterial properties of the prepared nanocomposites have been examined by the agar diffusion method against three Gram-positive and two Gram-negative bacteria, showing good bactericidal efficiency for all samples, except 5 % Ce–NiMoO4 (antibacterial activity exclusively against Gram-positive bacteria) and 5 % La–NiMoO4 (no antibacterial activity) nanocomposites. This work provided a novel pathway in the biomaterial field.
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