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Bacteria in Nanoparticle Synthesis: Current Status and Future Prospects

机译:纳米颗粒合成中的细菌:现状和未来展望

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Microbial metal reduction can be a strategy for remediation of metal contaminations and wastes. Bacteria are capable of mobilization and immobilization of metals and in some cases, the bacteria which can reduce metal ions show the ability to precipitate metals at nanometer scale. Biosynthesis of nanoparticles (NPs) using bacteria has emerged as rapidly developing research area in green nanotechnology across the globe with various biological entities being employed in synthesis of NPs constantly forming an impute alternative for conventional chemical and physical methods. Optimization of the processes can result in synthesis of NPs with desired morphologies and controlled sizes, fast and clean. The aim of this review is, therefore, to make a reflection on the current state and future prospects and especially the possibilities and limitations of the above mentioned bio-based technique for industries.
机译:减少微生物金属可以是补救金属污染和废物的策略。细菌能够动员和固定化金属,在某些情况下,可以还原金属离子的细菌具有在纳米级沉淀金属的能力。使用细菌进行生物纳米颗粒(NPs)的生物合成已成为全球绿色纳米技术中发展迅速的研究领域,在NPs的合成中采用了多种生物实体,不断形成常规化学和物理方法的替代选择。工艺的优化可以合成具有所需形态和受控大小的NP,快速而干净。因此,本综述的目的是对当前状态和未来前景,特别是上述基于生物的工业技术的可能性和局限性进行反思。

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