Department of Chemical Engineering, Tatung University, Taipei-104, Taiwan, Taiwan.
Post Graduate Department of Chemistry, Seth Kesarimal Porwal College of Arts, Science and Commerce, Kamptee-441001, India.
Curr Pharm Biotechnol. 2021;22(13):1782-1793. doi: 10.2174/1389201022666210111122911.
Nanotechnology is an emerging outlet of nanoscience in which the atoms are encompassed in nanoscale dimensions and become more receptive compared with their distinctive counterparts. Recently, the utilization of synthetic designs and physicochemical approaches has received special attention; nevertheless, the generation of noxious impressions on the eco-system has raised serious concerns of the scientific community worldwide. Presently, environment-friendly green synthesis routes are promising venues for the arrangement of Metal/Metal Oxide (M/MO) nanostructured materials by using plants and their corresponding alliances. This revolution is predominantly recompensing as far as the reduction of toxic emissions and wastes is concerned. Accordingly, material scientists have adopted various renewable naturally-occurring eco-friendly materials, and biogenic processes to fabricate the functional M/MO nanostructured materials. The current review article recapitulates and assimilates the present state of knowledge on different strategies for biogenic fabrication of M/MO nanostructured materials.
纳米技术是纳米科学的一个新兴分支,其中原子被包含在纳米尺寸范围内,与它们的独特对应物相比,变得更加敏感。最近,合成设计和物理化学方法的利用受到了特别关注;然而,对生态系统产生有害影响引起了全世界科学界的严重关注。目前,环保的绿色合成途径是通过使用植物及其相应的联盟来安排金属/金属氧化物(M/MO)纳米结构材料的有希望的场所。就减少有毒排放和废物而言,这场革命主要是有益的。因此,材料科学家已经采用了各种可再生的天然环保材料和生物成因过程来制造功能 M/MO 纳米结构材料。本文综述了生物合成 M/MO 纳米结构材料的不同策略的现状知识。