State Key Laboratory of Molecular Reaction Dynamics, Dalian National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.
Nat Commun. 2013;4:1960. doi: 10.1038/ncomms2960.
Conjugated microporous polymers are a new class of porous materials with an extended π-conjugation in an amorphous organic framework. Owing to the wide-ranging flexibility in the choice and design of components and the available control of pore parameters, these polymers can be tailored for use in various applications, such as gas storage, electronics and catalysis. Here we report a class of cobalt/aluminium-coordinated conjugated microporous polymers that exhibit outstanding CO2 capture and conversion performance at atmospheric pressure and room temperature. These polymers can store CO2 with adsorption capacities comparable to metal-organic frameworks. The cobalt-coordinated conjugated microporous polymers can also simultaneously function as heterogeneous catalysts for the reaction of CO2 and propylene oxide at atmospheric pressure and room temperature, wherein the polymers demonstrate better efficiency than a homogeneous salen-cobalt catalyst. By combining the functions of gas storage and catalysts, this strategy provides a direction for cost-effective CO2 reduction processes.
功能化微孔聚合物是一类新型的多孔材料,其在无定形有机骨架中具有扩展的π共轭。由于在组件的选择和设计方面具有广泛的灵活性,并且可以控制孔参数,因此这些聚合物可以针对各种应用进行定制,例如气体存储、电子和催化。在这里,我们报告了一类钴/铝配位的功能化微孔聚合物,它们在常压和室温下表现出出色的二氧化碳捕获和转化性能。这些聚合物可以存储 CO2,其吸附容量可与金属-有机骨架相媲美。钴配位的功能化微孔聚合物还可以同时作为 CO2 和环氧丙烷在常压和室温下反应的多相催化剂,其中聚合物的效率优于均相水杨醛钴催化剂。通过将气体存储和催化剂的功能相结合,这种策略为具有成本效益的 CO2 还原过程提供了一个方向。