催化作用
吸附
材料科学
化学工程
多孔性
环加成
热稳定性
金属有机骨架
溶剂
比表面积
碳纤维
纳米技术
化学
反应条件
打赌理论
多相催化
Atom(片上系统)
催化效率
多孔介质
热解
作者
Ze‐Long Liang,Yongwei Wang,Xinping Ai,J. Lv,Yingying Yu,Hongxia Shao,Hang Xu,Bin Zhao
摘要
The catalytic conversion of CO2 into value-added cyclic carbonates offers a sustainable route for carbon utilization, combining 100% atom economy with industrial relevance in polymer, electrolyte, and solvent applications. Herein, we report a novel [Zn3]-cluster-based framework (Zn-BTB) through a two-step synthetic strategy. Zn-BTB with a porous framework shows a high BET surface area of 523.86 m2 g-1 and CO2 adsorption capacities of 41.56 cm3 g-1 at 273 K and 23.38 cm3 g-1 at 298 K. Zn-BTB exhibits high stability under various conditions, including organic solvents, a broad pH range (1-13), and thermostability up to 422 °C. These results enable its high performance in catalytic CO2 cycloaddition conversion with epoxides, achieving over 80% yields of various cyclic carbonates. Notably, Zn-BTB maintains its catalytic performance over eight consecutive cycles without significant degradation. This work presents a two-step strategy for designing robust cluster-based MOFs with hierarchical porosity, demonstrating strong potential for sustainable catalytic applications for CO2 conversion.
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