Department of Chemistry , Indian Institute of Technology Ropar , Rupnagar 140001 , Punjab , India.
Inorg Chem. 2019 Mar 18;58(6):3925-3936. doi: 10.1021/acs.inorgchem.8b03612. Epub 2019 Feb 26.
Highly porous, polyhedral metal-organic frameworks (MOFs) of Co(II)/Ni(II), {[M(TATAB)(DABCO)(HO)]·12DMF·9HO} (where M = Co(II) (1)/Ni(II) (2), HTATAB = 4,4',4″- s-triazine-1,3,5-triyl-tri- p-aminobenzoic acid, and DABCO = 1,4-diazabicyclo[2.2.2]octane) have been synthesized solvothermally. Both MOFs 1 and 2 show a 2-fold interpenetrated 3D framework structure composed of dual-walled cages of dimension ∼ 30 Å functionalized with a high density of Lewis acidic Co(II)/Ni(II) metal sites and basic -NH- groups. Interestingly, MOF 1 shows selective adsorption of CO with high heat of adsorption ( Q) value of 39.7 kJ/mol that is further supported by theoretical studies with computed binding energy (BE) of 41.17 kJ/mol. The presence of the high density of both Lewis acidic and basic sites make MOFs 1/2 ideal candidate materials to carry out co-catalyst-free cycloaddition of CO to epoxides. Consequently, MOFs 1/2 act as excellent recyclable catalysts for cycloaddition of CO to epoxides for high-yield synthesis of cyclic carbonates under co-catalyst-free mild conditions of 1 bar of CO. Further, MOF 1 was recycled for five successive cycles without substantial loss in catalytic activity. Herein, rational design of rare examples of 3D polyhedral MOFs composed of Lewis acidic and basic sites exhibiting efficient co-catalyst-free conversion of CO has been demonstrated.
高度多孔的多面金属有机骨架(MOFs)Co(II)/Ni(II),{[M(TATAB)(DABCO)(HO)]·12DMF·9HO}(其中 M = Co(II)(1)/Ni(II)(2),HTATAB = 4,4',4″-三嗪-1,3,5-三基-三-对氨基苯甲酸,DABCO = 1,4-二氮杂二环[2.2.2]辛烷)已通过溶剂热法合成。两种 MOF 1 和 2 均表现出由双壁笼组成的 2 倍互穿 3D 框架结构,其尺寸约为 30 Å,功能化有高密度的路易斯酸性 Co(II)/Ni(II)金属位点和碱性-NH-基团。有趣的是,MOF 1 对 CO 具有选择性吸附,吸附热( Q)值高达 39.7 kJ/mol,这一结果得到了计算出的结合能(BE)为 41.17 kJ/mol 的理论研究的支持。路易斯酸性和碱性位点的高密度使 MOF 1/2 成为进行无共催化剂 CO 与环氧化物环加成的理想候选材料。因此,MOF 1/2 是无共催化剂温和条件(1 bar CO)下高效合成环状碳酸酯的 CO 与环氧化物环加成的出色可回收催化剂。此外,MOF 1 已在五个连续循环中回收,催化活性没有明显损失。本文合理设计了由路易斯酸性和碱性位点组成的罕见的 3D 多面 MOF,展示了高效的无共催化剂 CO 转化。