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扩散/调节剂双介导的晶体共价有机框架膜的固液/气相界面合成

Diffusion/Modulator Dual-Mediated Solid-Liquid/Vapor Interfacial Synthesis of Crystalline Covalent Organic Framework Membranes.

作者信息

Hou Shenghuai, Zhang Ganbing, Qiao Zhaoyu, Bai Yuxuan, Di Haoxin, Hua Yetong, Hao Tiantian, Xu Hui

机构信息

National Key Laboratory of Green Pesticide, Engineering Research Center of Photoenergy Utilization for Pollution Control and Carbon Reduction, Ministry of Education, College of Chemistry, Central China Normal University, Wuhan, 430079, China.

Collaborative Innovation Center for Advanced Organic Chemical Materials Co-constructed by the Province and Ministry, Ministry-of-Education Key Laboratory for the Synthesis and Applications of Organic Functional Molecules, College of Chemistry and Chemical Engineering, Hubei University, Wuhan, 430062, China.

出版信息

Angew Chem Int Ed Engl. 2025 Mar 10;64(11):e202421555. doi: 10.1002/anie.202421555. Epub 2025 Feb 11.

Abstract

Constructing oriented crystalline covalent organic framework (COF) membranes with controllable thickness for water purification is highly desirable. Herein, we present a simple and universal protocol to prepare high-quality COF membranes on the inner wall of a glass vessel using a diffusion/modulator dual-mediated solid-liquid/vapor interfacial synthesis strategy. By meticulous control of solvent and temperature, a thin supersaturated spreading liquid layer was formed on the glass wall surface and served as a confined microreactor for incubating crystal nuclei. This induced the aniline-modulated solid-liquid/vapor interfacial exchange reaction and upward growth of a highly ordered COF membrane. The experiments and theoretical simulations revealed the underlying mechanisms of solid-liquid/vapor interfacial nucleation, growth and crystallization. Using this strategy, we created 13 types of new, free-standing, imine-linked COF membranes with exceptional performances in crystallinity, porosity, stability, processability and adsorption capacity. As an application demonstration, a COF membrane-filled filter was coupled with high-performance liquid chromatography system for the automated removal of multitarget liquid-crystal monomers in real water samples (removal efficiency≥96 %). This study enriches the synthesis toolboxes of COF membranes and broadens their application scopes.

摘要

构建具有可控厚度的取向结晶共价有机框架(COF)膜用于水净化是非常可取的。在此,我们提出了一种简单通用的方法,使用扩散/调节剂双介导的固-液/气界面合成策略,在玻璃容器内壁制备高质量的COF膜。通过精确控制溶剂和温度,在玻璃壁表面形成了一层薄的过饱和铺展液层,作为孕育晶核的受限微反应器。这引发了苯胺调节的固-液/气界面交换反应以及高度有序的COF膜向上生长。实验和理论模拟揭示了固-液/气界面成核、生长和结晶的潜在机制。利用该策略,我们制备了13种新型的、独立的、亚胺连接的COF膜,它们在结晶度、孔隙率、稳定性、可加工性和吸附容量方面具有优异性能。作为应用示范,将COF膜填充的过滤器与高效液相色谱系统联用,用于自动去除实际水样中的多目标液晶单体(去除效率≥96%)。本研究丰富了COF膜的合成工具箱并拓宽了其应用范围。

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