Department of Chemistry, Tsinghua University, Beijing, 100084, China.
Adv Mater. 2015 Sep 23;27(36):5365-71. doi: 10.1002/adma.201500789. Epub 2015 Jul 14.
The miniaturization of metal-organic-framework (MOF) crystals to the nanoscale brings enhanced or novel properties and fulfils specific application needs. The focus here is on a kind of nanoMOF with special configurations and outstanding properties - the hollow structure. Firstly recent advances on the synthesis of MOF hollow nanostructures are introduced. Then, a novel approach based on a heterometallic system is highlighted, by which the facile synthesis of well-defined hollow MOF structures with high complexity is achieved. Moreover, MOF hollow nanostructures are emphasized as hosts/shell materials to incorporate functional catalysts that show dramatically enhanced performances in gas-involved reactions due to their inherent gas-absorption/storage properties.
金属-有机骨架(MOF)晶体的微型化达到纳米尺度,带来了增强或新颖的性能,并满足了特定的应用需求。这里的重点是一种具有特殊结构和卓越性能的纳米 MOF - 中空结构。首先介绍了 MOF 中空纳米结构合成的最新进展。然后,强调了一种基于杂金属体系的新方法,通过该方法可以轻松合成具有高复杂度的具有良好定义的中空 MOF 结构。此外,MOF 中空纳米结构被强调为主体/壳材料,以包含功能催化剂,由于其固有的气体吸收/存储特性,这些催化剂在涉及气体的反应中表现出显著增强的性能。