纳米银的生物合成、表征及抗菌活性研究进展

Tizeta Abera
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引用次数: 5

摘要

近年来,纳米技术因其在各个科学领域的广泛应用而引起了人们的广泛关注。纳米粒子是1-100纳米范围内的一簇原子,具有机械、光学、电学和结构方面的优势,并且比原始物质的表面积更大。纳米结构材料具有增强生命特性和保护环境的作用。如今,银纳米颗粒因其在工业、医药、人体健康和农业等人类感兴趣的各个领域的应用而引起了人们的关注。据不同的研究人员报道,它是抗菌、抗氧化和抗癌特性最受欢迎的金属纳米颗粒。本文综述了近年来AgNPs生物合成的研究进展。本文对AgNPs的绿色合成、表征及抗菌活性等方面的研究进行了综述。纳米粒子的合成方法有三种:物理、化学和生物方法。生物法合成AgNPs具有简单、经济、易于规模化、无毒等优点,是一种较好的方法。植物及其部分含有碳水化合物、脂肪、蛋白质、核酸、色素和几种类型的次级代谢物,这些代谢物作为还原剂从金属盐中产生纳米粒子,而不产生任何有毒的副产品。本文综述了不同植物材料制备的AgNPs的不同粒径(0.011 ~ 90nm)和形状。本文就AgNPs的绿色合成、表征及抗菌活性等方面进行了综述。
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Review on Biosynthesis, Characterization and Antibacterial Activity of Silver Nanoparticles
Recently, nanotechnology has attracted great attention due to its wide applications for different fields of science. Nanoparticles are a cluster of atoms in the range of 1-100 nm that provides mechanical, optical, electrical, and structural advanced, and also an increased surface area than the original substance. Nanostructure materials have got an enhancement to the feature of life and preservation of the environment. Now a day’s silver nanoparticles have gained attention due to its uses in various areas of human interest in the industry, medicine, human health, and agriculture. It is the most popular metallic nanoparticles in antimicrobial, antioxidant, and anti-cancer properties as different researchers reported. The objective of this review is to brief recent progress in the biosynthesis of AgNPs. This review may have a great contribution in the field of green synthesis, characterization, and antibacterial activities of AgNPs. There are three types of nanoparticles synthesis approaches they are physical, chemical, and biological methods. The biological method for the synthesis of AgNPs is a preferable approach due to its simplicity, cost-effectiveness, easily scale up to the industry and non-toxicity. Plants and their parts contain carbohydrates, fats, proteins, nucleic acids, pigments, and several types of secondary metabolites which act as reducing agents to produce nanoparticles from metal salts without producing any toxic by-product. In this review, different researches reported different particle size of AgNPs (0.011 – 90 nm) and shape by using different plant material. I conclude This review is concerned with the green synthesis of AgNPs, characterization, and antibacterial activity of AgNPs.
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