膜
共价键
气体分离
共价有机骨架
基质(化学分析)
分离(统计)
化学
材料科学
纳米技术
计算机科学
色谱法
有机化学
生物化学
机器学习
作者
Zheyuan Guo,Wenping Li,Hong Wu,Zhen Li,Shuqing Song,Xinli Ma,Jiafu Shi,Yanxiong Ren,Tong Huang,Yonghong Li,Zhongyi Jiang
标识
DOI:10.1038/s41467-025-56770-5
摘要
Mixed-matrix membranes that combine the merits of polymer and filler materials offer high potential for molecular separations, but precisely engineering the filler phase structure to give full play to the role of filler materials remains challenging. Herein, we explore a reverse-filling approach to fabricate mixed-matrix membranes with continuous and vertically penetrating covalent organic framework channels for CO2 separation. Covalent organic framework nanosheets as building blocks are pre-assembled into a robust and vertically oriented covalent organic framework scaffold via ice templating method, with the subsequent polyimide filling into the scaffold. The scaffold inherits the intrinsic CO2-philic pore structure of nanosheets, which serves as fast and selective CO2 transport channels in the membrane. The resulting membrane exhibits high CO2 permeability of 972 Barrer and CO2/CH4 selectivity of 58, along with long-term stability and scale-up capability. This approach may stimulate the thinking about how to design advanced mixed-matrix membranes.
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