Sun Yujia, Zhou Hong-Cai
Department of Chemistry, Texas A&M University, College Station, TX 77842-3012, USA.
Sci Technol Adv Mater. 2015 Sep 25;16(5):054202. doi: 10.1088/1468-6996/16/5/054202. eCollection 2015 Oct.
Metal-organic frameworks (MOFs) have attracted considerable attention for various applications due to their tunable structure, porosity and functionality. In general, MOFs have been synthesized from isolated metal ions and organic linkers under hydrothermal or solvothermal conditions via one-spot reactions. The emerging precursor approach and kinetically tuned dimensional augmentation strategy add more diversity to this field. In addition, to speed up the crystallization process and create uniform crystals with reduced size, many alternative synthesis routes have been explored. Recent advances in microwave-assisted synthesis and electrochemical synthesis are presented in this review. In recent years, post-synthetic approaches have been shown to be powerful tools to synthesize MOFs with modified functionality, which cannot be attained via synthesis. In this review, some current accomplishments of post-synthetic modification (PSM) based on covalent transformations and coordinative interactions as well as post-synthetic exchange (PSE) in robust MOFs are provided.
金属有机框架材料(MOFs)因其可调控的结构、孔隙率和功能性,在各种应用中备受关注。一般来说,MOFs是在水热或溶剂热条件下,通过单点反应由孤立的金属离子和有机连接体合成的。新兴的前驱体方法和动力学调控的尺寸增大策略为该领域增添了更多多样性。此外,为了加快结晶过程并制备尺寸减小的均匀晶体,人们探索了许多替代合成路线。本综述介绍了微波辅助合成和电化学合成的最新进展。近年来,后合成方法已被证明是合成具有修饰功能的MOFs的有力工具,而这些功能无法通过合成获得。在本综述中,提供了基于共价转化和配位相互作用的后合成修饰(PSM)以及在坚固MOFs中的后合成交换(PSE)的一些当前成果。