Liu Wenxian, Yin Ruilian, Xu Xilian, Zhang Lin, Shi Wenhui, Cao Xiehong
College of Materials Science and Engineering Zhejiang University of Technology 18 Chaowang Road Hangzhou Zhejiang 310014 P. R. China.
Center for Membrane Separation and Water Science & Technology Ocean College Zhejiang University of Technology 18 Chaowang Road Hangzhou Zhejiang 310014 P. R. China.
Adv Sci (Weinh). 2019 Apr 18;6(12):1802373. doi: 10.1002/advs.201802373. eCollection 2019 Jun 19.
Low-dimensional metal-organic frameworks (LD MOFs) have attracted increasing attention in recent years, which successfully combine the unique properties of MOFs, e.g., large surface area, tailorable structure, and uniform cavity, with the distinctive physical and chemical properties of LD nanomaterials, e.g., high aspect ratio, abundant accessible active sites, and flexibility. Significant progress has been made in the morphological and structural regulation of LD MOFs in recent years. It is still of great significance to further explore the synthetic principles and dimensional-dependent properties of LD MOFs. In this review, recent progress in the synthesis of LD MOF-based materials and their applications are summarized, with an emphasis on the distinctive advantages of LD MOFs over their bulk counterparties. First, the unique physical and chemical properties of LD MOF-based materials are briefly introduced. Synthetic strategies of various LD MOFs, including 1D MOFs, 2D MOFs, and LD MOF-based composites, as well as their derivatives, are then summarized. Furthermore, the potential applications of LD MOF-based materials in catalysis, energy storage, gas adsorption and separation, and sensing are introduced. Finally, challenges and opportunities of this fascinating research field are proposed.
近年来,低维金属有机框架材料(LD MOFs)受到了越来越多的关注,它成功地将金属有机框架材料的独特性质,如大表面积、可定制结构和均匀的孔洞,与低维纳米材料的独特物理和化学性质,如高长径比、丰富的可及活性位点和柔韧性结合在一起。近年来,LD MOFs在形态和结构调控方面取得了重大进展。进一步探索LD MOFs的合成原理和维度依赖性性质仍然具有重要意义。在这篇综述中,总结了基于LD MOF的材料合成及其应用的最新进展,重点强调了LD MOFs相对于其块状对应物的独特优势。首先,简要介绍了基于LD MOF的材料的独特物理和化学性质。然后总结了各种LD MOFs的合成策略,包括一维MOFs、二维MOFs以及基于LD MOF的复合材料及其衍生物。此外,还介绍了基于LD MOF的材料在催化、能量存储、气体吸附与分离以及传感方面的潜在应用。最后,提出了这个迷人研究领域的挑战和机遇。