Antibacterial activity of ZnO nanoparticles against diverse bacterial strains

Nabaa ali jasim, Anwar A. Khadim, Zwida K. Kadur
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Abstract

To control microbial infection, a number of novel tactics have been used. Increasingly, a new class of materials called metal oxide nanoparticles is being used. being acknowledged for its potential in health-related applications and research. According to recent investigations, metal oxides Nps that have been properly synthesized have strong antibacterial activity. Zinc oxide (ZnO) offers an array of exceptional advantages that make it a prized material across various fields. With its affordable cost, excellent gas sensing capabilities, and potent photocatalytic activity, ZnO proves to be a valuable asset in numerous applications. Its antimicrobial qualities ensure effective defense against harmful microorganisms, while the ability to create structures with unique optical features and act as a catalyst in small quantities adds to its versatility. Moreover, being non-toxic, ZnO is environmentally friendly and safe for use, making it an all-round remarkable substance with diverse practical uses.
氧化锌纳米颗粒对多种细菌的抑菌活性
为了控制微生物感染,一些新的策略已经被使用。一种被称为金属氧化物纳米颗粒的新型材料正在被越来越多地使用。在健康相关应用和研究方面的潜力得到认可。近年来的研究表明,适当合成的金属氧化物Nps具有较强的抗菌活性。氧化锌(ZnO)具有一系列独特的优点,使其成为各个领域的珍贵材料。ZnO具有可承受的成本,出色的气体传感能力和强大的光催化活性,在许多应用中被证明是一种宝贵的资产。它的抗菌特性确保了对有害微生物的有效防御,同时能够创造具有独特光学特征的结构,并在少量中充当催化剂,这增加了它的多功能性。此外,氧化锌无毒、环保、使用安全,是一种具有多种实际用途的全方位卓越物质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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