Department of Chemistry, Zhejiang University, Hangzhou 310027, China.
Hangzhou Global Scientific and Technological Innovation Center (HIC), Zhejiang University, Hangzhou 311200, China.
Chem Commun (Camb). 2022 Oct 11;58(81):11333-11346. doi: 10.1039/d2cc03692d.
Porous organic cages (POCs) have emerged as a new sub-class of porous materials that stand out by virtue of their tunability, modularity, and processability. Similar to other porous materials such as carbons, zeolites, and MOFs, the pore network formed by the interconnected cavities of POCs makes them inherently good candidates for gas capture and gas separation. However, in this review, we focus on the emerging trends in the application of POCs in the fields of clean energy and environmental sustainability, which are a result of their unique features. The structure-property relationship we attempted to extract from the case studies will provide guidance for the design of new functional POCs in the future.
多孔有机笼(POC)作为一类新型多孔材料脱颖而出,其特点在于可调节性、模块化和可加工性。与其他多孔材料(如碳、沸石和 MOF)类似,POC 中相互连接的空腔形成的孔网络使它们成为气体捕获和分离的固有良好候选材料。然而,在本综述中,我们专注于 POC 在清洁能源和环境可持续性领域应用的新兴趋势,这是其独特特性的结果。我们试图从案例研究中提取的结构-性质关系将为未来新型功能 POC 的设计提供指导。