Centre for Nano and Material Sciences, JAIN (Deemed-to-be University), Jain Global Campus, Bengaluru, 562112, Karnataka, India.
Centre for Research in Functional Materials (CRFM), JAIN (Deemed-to-be University), Jain Global Campus, Bengaluru, 562112, Karnataka, India.
Chemosphere. 2022 Sep;302:134845. doi: 10.1016/j.chemosphere.2022.134845. Epub 2022 May 4.
Metal-organic frameworks (MOFs) are a versatile class of porous materials offering unprecedented scope for chemical and structural tunability. On account of their synthetic versatility, tunable and exceptional host-guest chemistry they are widely utilized in many prominent water remediation techniques. However, some of the MOFs present low structural stabilities specifically in aqueous and harsh chemical conditions which impedes their potential application in the field. Among the currently explored MOFs, UiO-66 exhibits structural robustness and has gained immense scientific popularity. Built with a zirconium-terephthalate framework, the strong Zr-O bond coordination contributes to its stability in aqueous, chemical, and thermal conditions. Moreover, other exceptional features such as high surface area and uniform pore size add to the grand arena of porous nanomaterials. As a result of its stable nature, UiO-66 offers relaxed admittance towards various functionalization, including synthetic and post-synthetic modifications. Consequently, the adsorptive properties of these highly stable frameworks have been modulated by the addition of various functionalities. Moreover, due to the presence of catalytically active sites, the use of UiO-66 has also been extended towards the degradation of pollutants. Furthermore, to solve the practical handling issues of the crystalline powdered forms, UiO-66 has been incorporated into various membrane supports. The incorporation of UiO-66 in various matrices has enhanced the rejection, permeate flux, and anti-fouling properties of membranes. The combination of such exceptional characteristics of UiO-66 MOF has expanded its scope in targeted purification techniques. Subsequently, this review highlights the role of UiO-66 in major water purification techniques such as adsorption, photocatalytic degradation, and membrane separation. This comprehensive review is expected to shed light on the existing developments and guide the inexhaustible futuristic scope of UiO-66 MOF.
金属-有机骨架(MOFs)是一类多功能多孔材料,为化学和结构的可调节性提供了前所未有的空间。由于其合成的多功能性、可调谐性和特殊的主客体化学性质,它们被广泛应用于许多著名的水修复技术中。然而,一些 MOFs 特别是在水相和苛刻的化学条件下表现出较低的结构稳定性,这阻碍了它们在该领域的潜在应用。在目前探索的 MOFs 中,UiO-66 表现出结构的坚固性,并获得了巨大的科学关注。UiO-66 由锆-对苯二甲酸酯骨架构建而成,强的 Zr-O 键配位有助于其在水相、化学和热条件下的稳定性。此外,其他特殊的特性,如高表面积和均匀的孔径,为多孔纳米材料增添了光彩。由于其稳定的性质,UiO-66 对各种功能化具有宽松的接受度,包括合成和后合成修饰。因此,通过添加各种官能团,这些高度稳定的骨架的吸附性能得到了调节。此外,由于存在催化活性位点,UiO-66 的使用也已扩展到污染物的降解。此外,为了解决结晶粉末形式的实际处理问题,UiO-66 已被纳入各种膜载体中。UiO-66 在各种基质中的掺入提高了膜的截留率、渗透通量和抗污染性能。UiO-66 MOF 的这种特殊特性的结合扩大了其在目标净化技术中的应用范围。随后,本综述强调了 UiO-66 在主要水净化技术中的作用,如吸附、光催化降解和膜分离。这篇综述文章有望为 UiO-66 MOF 的现有发展提供启示,并指导其未来广阔的应用前景。