Department of Chemistry, Tsinghua University, Beijing, 100084 (China).
Angew Chem Int Ed Engl. 2014 Nov 10;53(46):12517-21. doi: 10.1002/anie.201406484. Epub 2014 Jul 27.
Metal-organic frameworks (MOFs) are potentially useful molecular materials that can exhibit structure flexibilities induced by some external stimuli. Such structure transformations can furnish MOFs with improved properties. The shape-controlled growth of MOFs combined with crystal-structure transformation is rarely achieved. Herein, we demonstrate the synthesis of hierarchical Zn/Ni-MOF-2 nanosheet-assembled hollow nanocubes (NAHNs) by a facile surfactant-free solvothermal approach. The unique nanostructures undergo crystal-structure transformation from Zn/Ni-MOF-5 nanocubes to Zn/Ni-MOF-2 nanosheets, which is analogous to the dissolution and recrystallization of inorganic nanocrystals. The present synthetic strategy to fabricate isostructural MOFs with hierarchical, hollow, and bimetallic nanostructures is expected to expand the diversity and range of potential applications of MOFs.
金属有机骨架(MOFs)是一种潜在有用的分子材料,能够表现出由一些外部刺激引起的结构灵活性。这种结构转变可以为 MOFs 提供改进的性能。MOFs 的形状控制生长与晶体结构转变很少能够同时实现。在此,我们通过简便的无表面活性剂溶剂热方法,展示了分级 Zn/Ni-MOF-2 纳米片组装的中空纳米立方体形貌(NAHNs)的合成。独特的纳米结构经历了从 Zn/Ni-MOF-5 纳米立方体形貌到 Zn/Ni-MOF-2 纳米片形貌的晶体结构转变,类似于无机纳米晶体的溶解和再结晶。目前制备具有分级、中空和双金属纳米结构的同构 MOFs 的合成策略有望扩展 MOFs 的多样性和潜在应用范围。