植物介导的贵金属纳米颗粒生物合成、表征方法、合成参数和抗菌作用综述

Supriya Joshi, A. Alam
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摘要

金属纳米颗粒由于其在卫生、化学、农业和生物技术等领域的广泛应用而受到越来越多的关注,这可能与它们的小尺寸相匹配有关。由于大多数植物通常经济、容易获取、环保和无害,因此利用植物材料生产纳米颗粒增加了很大的吸引力。本文的研究结果值得关注,因为纳米颗粒的生产在纳米颗粒的性质、类型和物理和化学过程中都有所不同,从而促进了纳米颗粒的绿色发展,它们的类型和性质。我们详细研究了利用大多数常见植物及其各部分提取物的纳米颗粒的生物合成,以及用于其鉴定的各种表征过程。目前大量的研究表明,植物提取物可以作为一种无害的前体用于纳米材料的合成。植物提取物中含有丰富的各种还原和封顶/平衡因子。因此,这种方法具有很大的放大潜力,可以产生各种形态的纳米颗粒。与传统的物理和化学方法相比,植物衍生的NPs在形成尺寸和产量方面最多不会更加稳定。最后,本文还讨论了不同实验药剂对纳米颗粒形成速率和粒径的影响。本文还讨论了植物介导的生物合成纳米颗粒的抗菌活性。
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Plant-mediated noble nanoparticle biosynthesis, characterization approaches, synthesis parameters, and antibacterial action: A review
Metallic nanoparticles are receiving more attention as a result of their extensive uses in fields such as health, chemistry, agriculture, and biotechnology, which may be related to their matching small sizes. Because most plants are normally economically, readily accessible, eco-friendly, and harmless, the utilization of plant material for nanoparticle production has increased a lot of traction. The findings of this review are noteworthy because nanoparticle production is different in the properties, types, and physical as well as chemical processes of nanoparticle development for the green development of nanoparticles, their types, and their properties. We have studied in detail the biosynthesis of nanoparticles utilizing extracts from most common plants and their various sections, as well as the various kinds of characterization processes employed for their identification. Numerous current investigations have shown that plant extracts can be used as a non-hazardous precursor for the combining of nanomaterial. Various kinds of reducing and capping/balance factors are abundant in plant extracts. As a result, this approach has great scale-up potential and can generate nanoparticles with a variety of morphologies. Plant-derived NPs are not at most further stable with regards to forming a size and produce a better yield than conventional physical and chemical approaches. As a result, the effect of numerous experimental agents on the size as well as the rate of nanoparticle formation is also discussed. The antibacterial activity of plant-mediated biosynthesized nanoparticles is also discussed in this paper.
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