Seungwan Han,Seonghwan Lee,Dongwook Kim,Junmo Seong,Amitosh Sharma,Jaewoong Lim,Seok Jeong,Guobin Zhao,Yu Chen,Seung Bin Baek,Yongchul G. Chung,Myoung Soo Lah
出处
期刊:Chemistry of Materials [American Chemical Society] 日期:2023-07-24卷期号:35 (15): 5903-5913被引量:3
标识
DOI:10.1021/acs.chemmater.3c00694
摘要
Chimeric metal–organic frameworks (CMOFs) composed of symmetry-mismatched inorganic and organic building blocks are rare because the interconnections between these blocks are topologically demanding. Herein, an MOF with symmetry-matched building blocks is used as a self-template for the template-assisted synthesis of CMOFs. Specifically, the post-synthetic transformation of the [Zn4O(COO)6] clusters in the self-templating MOF into the [Fe3IIIO(COO)6]+ clusters with symmetry-mismatched trigonal prismatic site symmetry affords isoreticular CMOFs while maintaining the template morphology and crystallinity. The framework strain of CMOFs due to the symmetry-mismatched linkages between their building blocks is reduced by modulating the conformation of organic building blocks with torsional degrees of freedom. The further transformation of [Fe3IIIO(COO)6]+-based CMOFs through redox-facilitated metal exchange using Cr2+ ions yields highly stable isostructural CMOFs containing [Cr3IIIO(COO)6]+ clusters and exhibiting stabilities in strongly acidic and moderately basic media comparable to those of prototypical [Cr3IIIO(COO)6]+-based MOFs with symmetry-matched building blocks. These results hold significant potential and highlight the vast opportunities for revisiting well-known yet fragile MOFs built upon the zinc acetate clusters.