Yu Wei, Lu Xinyi, Xiong Liping, Teng Jiaheng, Chen Cheng, Li Bisheng, Liao Bao-Qiang, Lin Hongjun, Shen Liguo
College of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua, 321004, China.
Key Laboratory of Watershed Earth Surface Processes and Ecological Security, Zhejiang Normal University, Jinhua, 321004, China.
Small. 2024 Jun;20(25):e2310799. doi: 10.1002/smll.202310799. Epub 2024 Jan 11.
In the evolving landscape of water treatment, membrane technology has ascended to an instrumental role, underscored by its unmatched efficacy and ubiquity. Diverse synthesis and modification techniques are employed to fabricate state-of-the-art liquid separation membranes. Click reactions, distinguished by their rapid kinetics, minimal byproduct generation, and simple reaction condition, emerge as a potent paradigm for devising eco-functional materials. While the metal-free thiol-ene click reaction is acknowledged as a viable approach for membrane material innovation, a systematic elucidation of its applicability in liquid separation membrane development remains conspicuously absent. This review elucidates the pre-functionalization strategies of substrate materials tailored for thiol-ene reactions, notably highlighting thiolation and introducing unsaturated moieties. The consequential implications of thiol-ene reactions on membrane properties-including trade-off effect, surface wettability, and antifouling property-are discussed. The application of thiol-ene reaction in fabricating various liquid separation membranes for different water treatment processes, including wastewater treatment, oil/water separation, and ion separation, are reviewed. Finally, the prospects of thiol-ene reaction in designing novel liquid separation membrane, including pre-functionalization, products prediction, and solute-solute separation membrane, are proposed. This review endeavors to furnish invaluable insights, paving the way for expanding the horizons of thiol-ene reaction application in liquid separation membrane fabrication.
在不断发展的水处理领域,膜技术凭借其无与伦比的功效和广泛应用,已占据重要地位。人们采用各种合成和改性技术来制备先进的液体分离膜。点击反应以其快速的反应动力学、极少的副产物生成和简单的反应条件而著称,成为设计生态功能材料的有力范例。尽管无金属硫醇 - 烯点击反应被认为是膜材料创新的一种可行方法,但对其在液体分离膜开发中的适用性仍缺乏系统的阐释。本综述阐述了为硫醇 - 烯反应量身定制的底物材料的预功能化策略,特别强调了硫醇化和引入不饱和基团。讨论了硫醇 - 烯反应对膜性能的影响,包括权衡效应、表面润湿性和抗污染性能。综述了硫醇 - 烯反应在制备用于不同水处理过程的各种液体分离膜中的应用,包括废水处理、油/水分离和离子分离。最后,提出了硫醇 - 烯反应在设计新型液体分离膜方面的前景,包括预功能化、产物预测和溶质 - 溶质分离膜。本综述旨在提供宝贵的见解,为拓展硫醇 - 烯反应在液体分离膜制备中的应用范围铺平道路。