Reticular Chemistry Approach to Constructing Metal-organic Frameworks with hmc Topology Using Organic Cage Building Blocks
Abstract
A molecular design strategy for constructing metal–organic frameworks (MOFs) from preorganized organic cage building blocks is presented. Two frameworks, MOF-POC-1 and MOF-POC-2, were synthesized and found to crystallize in the cubic Fm-3m space group, adopting an hmc topology generated by using 6-connected carboxylic acid organic cages as building blocks. Notably, MOF-POC-2 was observed to exhibit intrinsic porosity and gas adsorption, highlighting the potential of employing pre-organized organic cages as modular components for the rational design of highly symmetric, porous MOFs with tunable functionalities.
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