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用于环境修复的共价和非共价功能化纳米材料。

Covalent and Non-covalent Functionalized Nanomaterials for Environmental Restoration.

机构信息

Key Laboratory for Palygorskite Science and Applied Technology of Jiangsu Province, National and Local Joint Engineering Research Center for Mineral Salt Deep Utilization, Huaiyin Institute of Technology, Huai'an, 223003, China.

Institute of Chemical Sciences, University of Peshawar, Khyber Pakhtunkhwa, 25120, Pakistan.

出版信息

Top Curr Chem (Cham). 2022 Aug 11;380(5):44. doi: 10.1007/s41061-022-00397-3.

Abstract

Nanotechnology has emerged as an extraordinary and rapidly developing discipline of science. It has remolded the fate of the whole world by providing diverse horizons in different fields. Nanomaterials are appealing because of their incredibly small size and large surface area. Apart from the naturally occurring nanomaterials, synthetic nanomaterials are being prepared on large scales with different sizes and properties. Such nanomaterials are being utilized as an innovative and green approach in multiple fields. To expand the applications and enhance the properties of the nanomaterials, their functionalization and engineering are being performed on a massive scale. The functionalization helps to add to the existing useful properties of the nanomaterials, hence broadening the scope of their utilization. A large class of covalent and non-covalent functionalized nanomaterials (FNMs) including carbons, metal oxides, quantum dots, and composites of these materials with other organic or inorganic materials are being synthesized and used for environmental remediation applications including wastewater treatment. This review summarizes recent advances in the synthesis, reporting techniques, and applications of FNMs in adsorptive and photocatalytic removal of pollutants from wastewater. Future prospects are also examined, along with suggestions for attaining massive benefits in the areas of FNMs.

摘要

纳米技术已经成为一门非凡且快速发展的科学学科。它通过在不同领域提供多样化的前景,改变了整个世界的命运。纳米材料因其极小的尺寸和巨大的表面积而备受关注。除了天然存在的纳米材料外,还在大规模制备具有不同尺寸和性能的合成纳米材料。这种纳米材料作为一种创新和绿色的方法被应用于多个领域。为了扩大纳米材料的应用并增强其性能,正在大规模进行其功能化和工程化。功能化有助于增加纳米材料现有的有用特性,从而拓宽其应用范围。一大类共价和非共价功能化纳米材料(FNMs),包括碳、金属氧化物、量子点以及这些材料与其他有机或无机材料的复合材料,被合成并用于环境修复应用,包括废水处理。本文综述了 FNMs 在吸附和光催化去除废水中污染物方面的合成、报告技术和应用的最新进展。还探讨了未来的前景,并就 FNMs 领域获得大规模效益提出了建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb5c/9372017/6fa0536af9d8/41061_2022_397_Sch1_HTML.jpg

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