Li Ji, Huang Jin-Yi, Meng Yu-Xuan, Li Luyan, Zhang Liang-Liang, Jiang Hai-Long
Strait Laboratory of Flexible Electronics (SLoFE), Strait Institute of Flexible Electronics (SIFE, FutureTechnologies), Fujian Normal University, Fuzhou 350117, Fujian, P. R. China.
Institute of Flexible Electronics, Northwestern Polytechnical University, Xi'an 710072, ShaanXi, P. R. China.
Chem Commun (Camb). 2023 Feb 28;59(18):2541-2559. doi: 10.1039/d2cc06948b.
Recently, Zr- and Ti-based metal-organic frameworks (MOFs) have gathered increasing interest in the field of chemistry and materials science, not only for their ordered porous structure, large surface area, and high thermal and chemical stability, but also for their various potential applications. Particularly, the unique features of Zr- and Ti-based MOFs enable them to be a highly versatile platform for catalysis. Although much effort has been devoted to developing Zr- and Ti-based MOF materials, they still suffer from difficulties in targeted synthesis, especially for Ti-based MOFs. In this Feature Article, we discuss the evolution of Zr- and Ti-based MOFs, giving a brief overview of their synthesis and structures. Furthermore, the catalytic uses of Zr- and Ti-based MOF materials in the previous 3-5 years have been highlighted. Finally, perspectives on the Zr- and Ti-based MOF materials are also proposed. This work provides in-depth insight into the advances in Zr- and Ti-based MOFs and boosts their catalytic applications.
最近,基于锆和钛的金属有机框架(MOF)在化学和材料科学领域越来越受到关注,这不仅是因为它们具有有序的多孔结构、大的表面积以及高热稳定性和化学稳定性,还因为它们具有各种潜在应用。特别是,基于锆和钛的MOF的独特特性使其成为一个高度通用的催化平台。尽管已经投入了大量精力来开发基于锆和钛的MOF材料,但它们在定向合成方面仍然存在困难,尤其是对于基于钛的MOF。在这篇专题文章中,我们讨论了基于锆和钛的MOF的发展历程,简要概述了它们的合成方法和结构。此外,还重点介绍了基于锆和钛的MOF材料在过去3至5年中的催化应用。最后,还对基于锆和钛的MOF材料提出了展望。这项工作深入洞察了基于锆和钛的MOF的进展,并推动了它们的催化应用。