Negro Cristina, Guerra Walter D, Armentano Donatella, Ferrando-Soria Jesús, Grancha Thais, Pardo Emilio
Instituto de Ciencia Molecular (ICMol), Universidad de Valencia, 46980 Paterna, Valencia, Spain.
Dipartimento di Chimica e Tecnologie Chimiche, Università della Calabria, 87036 Rende, Cosenza, Italy.
Chem Commun (Camb). 2024 Dec 12;60(100):14935-14951. doi: 10.1039/d4cc05439c.
Concerns regarding water contamination are escalating due to the increasing presence of all types of pollutants in water sources, which pose serious health risks to humans and wildlife, disrupt ecosystems, and compromise the safety of drinking water. Addressing water contamination requires stringent regulations and increased public awareness, but especially, it requires the development of highly effective new technologies to decontaminate those aquatic environments that have been already polluted over the past few decades. Since the emergence of metal-organic frameworks (MOFs), their use has been proposed in a multitude of fields, given their unique physicochemical properties, and one of the fields where a realistic application can be expected in the near future is water remediation. In particular, oxamidato-based biological MOFs (bioMOFs) have demonstrated, in recent years, unique properties such as extraordinary robustness, crystallinity and water- and pH-stability as well as very easy functionalisation, which situates them among the best adsorbents for this environmental purpose. In this review, we have summarised the most remarkable results of oxamidato-based bioMOFs in the field of water remediation. Moreover, on the basis of the reported results, we dare to suggest the real possibilities of application, in relevant real-world environments, for these and other MOFs, as well as the main obstacles that will need to be overcome, aiming to widening the range of applicability of MOFs and making solid headway towards sustainable development.
由于水源中各类污染物的不断增加,对水污染的担忧日益加剧。这些污染物对人类和野生动物构成严重健康风险,破坏生态系统,并危及饮用水安全。解决水污染问题需要严格的法规和提高公众意识,但尤其需要开发高效的新技术,以净化过去几十年中已被污染的水生环境。自金属有机框架(MOF)出现以来,鉴于其独特的物理化学性质,人们已提议在众多领域使用它们,近期有望实现实际应用的领域之一是水修复。特别是,基于草酰胺的生物金属有机框架(bioMOF)近年来已展现出独特的性质,如非凡的稳定性、结晶性以及对水和pH的稳定性,还有非常易于功能化,这使其成为用于此环境目的的最佳吸附剂之一。在本综述中,我们总结了基于草酰胺的生物金属有机框架在水修复领域最显著的成果。此外,基于已报道的结果,我们大胆提出这些及其他金属有机框架在相关现实环境中的实际应用可能性,以及需要克服的主要障碍,旨在扩大金属有机框架的适用范围并朝着可持续发展取得坚实进展。