材料科学
多孔性
共价键
压缩(物理)
脆性
可重用性
纳米技术
共价有机骨架
复合材料
多孔介质
工作(物理)
化学工程
机械工程
计算机科学
化学
有机化学
软件
工程类
程序设计语言
作者
Seema Agarwal,Chenhui Ding,Yingying Du,T.R. Fischer,Jürgen Senker
标识
DOI:10.1002/anie.202502513
摘要
The emergence of covalent organic frameworks (COFs) macroscopic objects with hierarchical porous structures addresses the limitations of traditional COF powders, which are challenging to process, thus bringing them closer to practical applications. However, the brittleness of the parent COF powder results in poor mechanical stability of these COF macroscopic objects, presenting a significant challenge that must be overcome for their continued development. In this work, we successfully obtained a continuous, hierarchically porous, and interconnected open‐cell COF structure made up of hollow sponge walls of thickness 100‐250 nm through a template‐assisted framework process. This unique structure endows the COF sponge with a high surface area (1655 m2 g−1), ultra‐low density (2.2 mg cm−3), and exceptional mechanical stability. Even after 300,000 compressions at a 50% compression rate, its stress and height decreased by only 7.9% and 7.1%, respectively. These properties also grant the COF sponge excellent solvent absorption capacity, catalytic performance, and reusability. Therefore, this work broadens the development pathway for COF macroscopic objects and is expected to further unlock the potential of COFs in practical applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI