| Literature DB >> 31736178 |
Gang-Gang Chang1, Xiao-Chen Ma1, Yue-Xing Zhang2, Li-Ying Wang3, Ge Tian1, Jia-Wen Liu1, Jian Wu1, Zhi-Yi Hu1, Xiao-Yu Yang1, Banglin Chen4.
Abstract
Hierarchical porosity and functionalization help to fully make use of metal-organic frameworks (MOFs) for their diverse applications. Herein, a simple strategy is reported to construct hierarchically porous MOFs through a competitive coordination method using tetrafluoroborate (M(BF4 )x , where M is metal site) as both functional sites and etching agents. The resulting MOFs have in situ formed defect-mesopores and functional sites without sacrificing their structure stability. The formation mechanism of the defect-mesopores is elucidated by a combination of experimental and first-principles calculation method, indicating the general feasibility of this new approach. Compared with the original microporous counterparts, the new hierarchical MOFs exhibit superior adsorption for the bulky dye molecules and catalytic performance for the CO2 conversion attributed to their specific hierarchical pore structures.Entities:
Keywords: functionalization; heterogeneous catalysis; hierarchical porosity; metal-organic frameworks (MOFs)
Year: 2019 PMID: 31736178 DOI: 10.1002/adma.201904969
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849