Xin Jia-Hui, Fan Hong-Yu, Guo Bian-Bian, Yang Hao-Cheng, Zhu Cheng-Ye, Zhang Chao, Xu Zhi-Kang
MOE Engineering Research Center of Membrane and Water Treatment, and Key Lab of Adsorption and Separation Materials & Technologies of Zhejiang Province, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, China.
The "Belt and Road" Sino-Portugal Joint Lab on Advanced Materials, International Research Center for X Polymers, Zhejiang University, Hangzhou 310027, China.
Chem Commun (Camb). 2023 Nov 7;59(89):13258-13271. doi: 10.1039/d3cc04171a.
Interfacial polymerization is a well-known process to synthesize separation layers for thin film composite membranes at an immiscible organic liquid-aqueous liquid interface. The organic-aqueous interface determines the diffusion dynamics of monomers and the chemical environment for polymerization, exerting a critical influence on the formation of polymer thin films. This review summarizes recent advances in tailoring interfacial polymerization using interfaces beyond the conventional alkane-water interface to achieve high-performance separation films with designed structures. Diverse liquid-liquid interfaces are introduced for synthesizing separation films by adding co-solvents into the organic phase and/or the aqueous phase, respectively, or by replacing one of the liquid phases with other solvents. Innovative liquid-gel and liquid-gas interfaces are then summarized for the synthesis of polymer thin films for separation. Novel strategies to form reaction interfaces, such as spray-coating, are also presented and discussed. In addition, we discuss the details of how a physically or chemically patterned substrate affects interfacial polymerization. Finally, the potential of unconventional interfaces in interfacial polymerization is forecast with both challenges and opportunities.
界面聚合是一种在不互溶的有机液体 - 水液体界面合成薄膜复合膜分离层的知名方法。有机 - 水界面决定了单体的扩散动力学和聚合的化学环境,对聚合物薄膜的形成产生关键影响。本综述总结了利用超越传统烷烃 - 水界面的界面来定制界面聚合以实现具有设计结构的高性能分离膜的最新进展。通过分别向有机相和/或水相中添加共溶剂,或用其他溶剂替代其中一相,引入了多种液 - 液界面用于合成分离膜。然后总结了用于合成分离用聚合物薄膜的创新液 - 凝胶和液 - 气界面。还介绍并讨论了形成反应界面的新策略,如喷涂。此外,我们讨论了物理或化学图案化基材如何影响界面聚合的细节。最后,展望了非常规界面在界面聚合中的潜力以及面临的挑战和机遇。