化学
多孔性
铋
化学工程
多孔介质
金属有机骨架
有机化学
吸附
工程类
作者
Wafaa A. Mohamed,Jeet Chakraborty,Laurens Bourda,Roy Lavendomme,Chunhui Liu,Rino Morent,Nathalie De Geyter,Kristof Van Hecke,Anna M. Kaczmarek,Pascal Van Der Voort
摘要
Defect engineering in metal-organic frameworks (MOFs) has gained worldwide research traction, as it offers tools to tune the properties of MOFs. Herein, we report a novel 2-fold interpenetrated Bi-based MOF made of a tritopic flexible organic linker, followed by missing-linker defect engineering. This procedure creates a gradually augmented micro- and mesoporosity in the parent (originally nonporous) network. The resulting MOFs can tolerate a remarkable extent of linker vacancy (with absence of up to 60% of linkers per Bi node) created by altering the crystal-growth rate as a function of synthesis temperature and duration. Owing to the enhanced porosity and availability of the uncoordinated Lewis acidic Bi sites, the defect-engineered MOFs manifested improved surface areas, augmented CO
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