膜
纳滤
共价键
杂原子
化学
化学工程
共价有机骨架
芳纶
聚合
界面聚合
海水淡化
化学稳定性
有机化学
聚合物
芘
材料科学
海水淡化
分子工程
组合化学
吸附
分子
纳米技术
膜技术
共轭体系
聚酰胺
作者
Yu Liao,Shuai Fang,Jiahao Tang,Mingxiu Tang,Fuxin Zheng,Zhenxiang Pan,Jiang Zhan,Guo-Niu Han
标识
DOI:10.1038/s41467-025-68171-9
摘要
Membrane nanofiltration provides a sustainable and energy-efficient platform for precise molecular separation. However, highly permselective and chemically stable membrane materials capable of operating under harsh conditions are currently lacking. Here we report a generalizable monomer-solvent dual engineering strategy that enables the one-step synthesis of chemically robust thiazole-linked polycrystalline covalent organic framework (COF) membranes via scalable interfacial polymerization under ambient conditions for ultraselective molecular separation. The fully π-conjugated aromatic skeleton and the spatially exposed heteroatoms on the irreversible thiazole linkages establish a lone-pair electron network, which not only forms an atomic hydration layer to protect the framework but also confers long-range regulation of electrostatic interactions. The thiazole-linked COF membranes exhibit remarkable structural stability in strong acids (e.g., 12 M HCl), good resistance to organic solvents and chlorine, and high pharmaceutical desalination permselectivity, achieving ion/pharmaceutical separation factors up to 690. This versatile thiazole-linked framework structure offers potential for the development of chemically stable aromatic conjugated COF membranes for diverse vital applications.
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