He Jun, Cheng Shengxian, Xu Zhengtao
School of Chemical Engineering and Light Industry, Guangdong University of Technology, Guangzhou, 510006, P. R. China.
Department of Chemistry, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong, P. R. China.
Chemistry. 2019 Jul 2;25(37):8654-8662. doi: 10.1002/chem.201806170. Epub 2019 May 16.
The versatile sulfur chemistry, as exemplified by the reactive yet tractable thiol group (-SH), offers unique opportunities for bypassing the obstacles in accessing stable and electroactive metal-organic frameworks. Of particular interest are recent advances in assembling MOF materials equipped with free-standing thiol functions: metal guests can be conveniently inserted to install electroactive metal-sulfur bonds, which, as crosslinks, also stabilize the host coordination net. Here the historical development of the bifunctional, two-step design embodied by the thiol-tagged MOF solids is traced, in order to highlight the underlying spirit that has driven research efforts in the past two decades. Going forward, broad new horizons are foreseen in solid-state materials synthesis, for example, arising from various sulfur-based hard-and-soft combinations, in synergy with the crystalline and modular MOF structural platform.
多功能的硫化学,以具有反应活性但易于处理的硫醇基团(-SH)为例,为绕过获取稳定且具有电活性的金属有机框架过程中的障碍提供了独特机遇。特别值得关注的是在组装具有独立硫醇功能的金属有机框架材料方面的最新进展:金属客体可以方便地插入以形成电活性金属-硫键,这些键作为交联剂,还能稳定主体配位网络。本文追溯了硫醇标记的金属有机框架固体所体现的双功能两步设计的历史发展,以突出在过去二十年推动研究工作的潜在理念。展望未来,固态材料合成有望迎来广阔的新前景,例如,源自各种基于硫的软硬组合,并与晶体和模块化的金属有机框架结构平台协同作用。