环加成
化学
催化作用
选择性
金属有机骨架
吸附
协同催化
路易斯酸
配体(生物化学)
三唑
组合化学
分子
金属
化学工程
基质(水族馆)
无机化学
有机化学
工程类
受体
地质学
海洋学
生物化学
作者
Pei‐Zhou Li,Xiaojun Wang,Jia Liu,Jie Sheng Lim,Ruqiang Zou,Yanli Zhao
摘要
A highly porous metal–organic framework (MOF) incorporating both exposed metal sites and nitrogen-rich triazole groups was successfully constructed via solvothermal assembly of a clicked octcarboxylate ligand and Cu(II) ions, which presents a high affinity toward CO2 molecules clearly verified by gas adsorption and Raman spectral detection. The constructed MOF featuring CO2-adsorbing property and exposed Lewis-acid metal sites could serve as an excellent catalyst for CO2-based chemical fixation. Catalytic activity of the MOF was confirmed by remarkably high efficiency on CO2 cycloaddition with small epoxides. When extending the substrates to larger ones, its activity showed a sharp decrease. These observations reveal that MOF-catalyzed CO2 cycloaddition of small substrates was carried out within the framework, while large ones cannot easily enter into the porous framework for catalytic reactions. Thus, the synthesized MOF exhibits high catalytic selectivity to different substrates on account of the confinement of the pore diameter. The high efficiency and size-dependent selectivity toward small epoxides on catalytic CO2 cycloaddition make this MOF a promising heterogeneous catalyst for carbon fixation.
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