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Aquaporin-Based Biomimetic Polymeric Membranes: Approaches and Challenges

机译:基于水通道蛋白的仿生聚合物膜:方法和挑战

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摘要

In recent years, aquaporin biomimetic membranes (ABMs) for water separation have gained considerable interest. Although the first ABMs are commercially available, there are still many challenges associated with further ABM development. Here, we discuss the interplay of the main components of ABMs: aquaporin proteins (AQPs), block copolymers for AQP reconstitution, and polymer-based supporting structures. First, we briefly cover challenges and review recent developments in understanding the interplay between AQP and block copolymers. Second, we review some experimental characterization methods for investigating AQP incorporation including freeze-fracture transmission electron microscopy, fluorescence correlation spectroscopy, stopped-flow light scattering, and small-angle X-ray scattering. Third, we focus on recent efforts in embedding reconstituted AQPs in membrane designs that are based on conventional thin film interfacial polymerization techniques. Finally, we describe some new developments in interfacial polymerization using polyhedral oligomeric silsesquioxane cages for increasing the physical and chemical durability of thin film composite membranes.
机译:近年来,用于水分离的水通道仿生膜(ABM)引起了极大的兴趣。尽管第一批ABM可以从市场上买到,但进一步的ABM开发仍存在许多挑战。在这里,我们讨论了ABM的主要成分之间的相互作用:水通道蛋白(AQP),用于AQP重构的嵌段共聚物和基于聚合物的支撑结构。首先,我们简要介绍了挑战并回顾了了解AQP与嵌段共聚物之间相互作用的最新进展。其次,我们回顾了一些用于研究AQP掺入的实验表征方法,包括冷冻断裂透射电子显微镜,荧光相关光谱,停流光散射和小角度X射线散射。第三,我们集中在基于常规薄膜界面聚合技术的膜设计中嵌入重构AQP的最新努力。最后,我们描述了使用多面体低聚倍半硅氧烷笼进行界面聚合以提高薄膜复合膜的物理和化学耐久性的一些新进展。

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