Department of Biotechnology, Rajalakshmi Engineering College, Chennai, 602105, India.
Department of Chemical Engineering, Sri Sivasubramaniya Nadar College of Engineering, Chennai, 603 110, India.
Chemosphere. 2021 Feb;264(Pt 2):128580. doi: 10.1016/j.chemosphere.2020.128580. Epub 2020 Oct 9.
Nanotechnology has become one of the emerging multi-disciplinary fields receiving universal attention and playing a substantial role in agriculture, environment and pharmacology. In spite of various techniques employed for nanoparticle synthesis such as laser ablation, mechanical milling, spinning and chemical deposition, usage of hazardous chemicals and expensiveness of the process makes it unsuitable for the continuous production. Hence the necessity of sustainable, economic and environment friendly approach development have increased in recent years. Microbial synthesis of nanoparticles connecting microbiology and nanotechnology is one of the green techniques employed for sustainable production. Gold, silver and other metal nanoparticles like platinum, palladium, molybdenum nanoparticles biosynthesis by bacteria, fungi, yeast and algae have been reported in the present review. On account of microbial rich community, several microbes have been explored for the production of nanoparticles. Nanoparticles are also employed for environmental remediation processes such as pollutant removal and detection of contaminants. Lack of monodispersity and prolonged duration of synthesis are the limitations of bio-synthesis process which can be overcome by optimization of methods of microbial cultivation and its extraction techniques. The current review describes the different microbes involved in the synthesis of nanoparticles and its environmental applications.
纳米技术已成为一个新兴的多学科领域,受到普遍关注,并在农业、环境和药理学中发挥着重要作用。尽管已经采用了各种技术来合成纳米粒子,例如激光烧蚀、机械研磨、旋转和化学沉积,但由于使用了危险化学品且过程昂贵,因此不适合连续生产。因此,近年来人们越来越需要开发可持续、经济和环保的方法。微生物合成纳米粒子将微生物学和纳米技术联系起来,是用于可持续生产的绿色技术之一。本综述报道了细菌、真菌、酵母和藻类合成金、银和其他金属纳米粒子,如铂、钯、钼纳米粒子。由于微生物群落丰富,已经探索了几种微生物来生产纳米粒子。纳米粒子还被用于环境修复过程,例如去除污染物和检测污染物。生物合成过程的局限性在于缺乏单分散性和较长的合成时间,可以通过优化微生物培养方法及其提取技术来克服。本综述描述了参与纳米粒子合成及其环境应用的不同微生物。