Green Chemistry Network Center, Department of Chemistry, University of Delhi, New Delhi, 110007, India.
Department of Chemistry, Ramjas College, University of Delhi, New Delhi, 110007, India.
Small. 2023 Jun;19(26):e2300394. doi: 10.1002/smll.202300394. Epub 2023 Mar 22.
Hierarchical micro/nanostructures are constructed by micro-scaled objects with nanoarchitectures belonging to an interesting class of crystalline materials that has significant applications in diverse fields. Featured with a large surface-to-volume ratio, facile mass transportation, high stability against aggregation, structurally enhanced adsorption, and catalytical performances, three dimenisional (3D) hierarchical metal oxides have been considered as versatile functional materials for waste-water treatment. Due to the ineffectiveness of traditional water purification protocols for reclamation of water, lately, the use of hierarchical metal oxides has emerged as an appealing platform for the remediation of water pollution owing to their fascinating and tailorable physiochemical properties. The present review highlights various approaches to the tunable synthesis of hierarchical structures along with their surface modification strategies to enhance their efficiencies for the removal of different noxious substances. Besides, their applications for the eradication of organic and inorganic contaminants have been discussed comprehensively with their plausible mechanistic pathways. Finally, overlooked aspects in this field as well as the major roadblocks to the implementation of these metal oxide architectures for large-scale treatment of wastewater are provided here. Moreover, the potential ways to tackle these issues are also presented which may be useful for the transformation of current water treatment technologies.
通过具有纳米结构的微尺度物体构建了层次微/纳结构,这些微尺度物体属于一类有趣的晶体材料,在多个领域都有重要的应用。具有大的比表面积、易于传质、对聚集的高稳定性、结构增强的吸附和催化性能,三维(3D)分层金属氧化物已被认为是用于废水处理的多功能功能材料。由于传统的水净化方案对于水的回收效果不佳,最近,由于分层金属氧化物具有吸引人的和可调节的物理化学性质,因此作为水污染修复的一个有吸引力的平台而出现。本综述重点介绍了可调谐合成分层结构的各种方法以及它们的表面修饰策略,以提高其去除不同有害物质的效率。此外,还全面讨论了它们在消除有机和无机污染物方面的应用,以及它们的可能的机制途径。最后,本文还提供了该领域被忽视的方面以及在大规模处理废水方面实施这些金属氧化物结构的主要障碍。此外,还提出了一些解决这些问题的潜在方法,这可能对转化当前的水处理技术有用。