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High-Performance Multi layer Composite Membranes with Mussel-Inspired Polydopamine as a Versatile Molecular Bridge for CO2 Separation

机译:贻贝启发性聚多巴胺的高性能多层复合膜,是多功能的二氧化碳分离分子桥

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摘要

It is desirable to develop high-performance composite membranes for efficient CO, separation in CO2 capture process. Introduction of a highly permeable polydimethylsiloxane (PDMS) intermediate layer between a selective layer and a porous support has been considered as a simple but efficient way to enhance gas permeance while maintaining high gas selectivity, because the introduced intermediate layer could benefit the formation of an ultrathin defect-free selective layer owing to the circumvention of pore penetration phenomenon. However, the selection of selective layer materials is unfavorably restricted because of the low surface energy of PDMS. Various highly hydrophilic membrane materials such as amino group-rich polyvinylamine (PVAm), a representative facilitated transport membrane material for CO2 separation, could not be facilely coated over the surface of the hydrophobic PDMS intermediate layer uniformly. Inspired by the hydrophilic nature and strong adhesive ability of polydopamine (PDA), PDA was therefore selected as a versatile molecular bridge between hydrophobic PDMS and hydrophilic PVAm. The PDA coating endows a highly compatible interface between both components with a large surface energy difference via multiple-site cooperative interactions. The resulting multilayer composite membrane with a thin facilitated transport PVAm selective layer exhibits a notably enhanced CO2 permeance (1887 CPU) combined with a slightly improved CO2/N-2 selectivity (83), as well as superior structural stability. Similarly, the multilayer composite membrane with a hydrophilic CO2-philic Pebax 1657 selective layer was also developed for enhanced CO2 separation performance.
机译:期望开发高性能复合膜以在CO 2捕获过程中有效地分离CO。在选择层和多孔载体之间引入高渗透性聚二甲基硅氧烷(PDMS)中间层已被认为是在保持高气体选​​择性的同时提高气体渗透性的简单而有效的方法,因为引入的中间层可能有利于超薄薄膜的形成。由于规避了孔隙渗透现象,所以没有缺陷的选择层。然而,由于PDMS的低表面能,选择层材料的选择受到不利的限制。各种高亲水性的膜材料,例如富含氨基的聚乙烯胺(PVAm),一种用于CO2分离的代表性的促进传输膜材料,不能轻易地均匀地涂覆在疏水性PDMS中间层的表面上。受聚多巴胺(PDA)的亲水性和强大的粘合能力的启发,因此选择PDA作为疏水性PDMS和亲水性PVAm之间的通用分子桥。 PDA涂层通过多点协作相互作用,使两个组件之间具有高度兼容的界面,并具有较大的表面能差异。所得的具有薄的,易于输送的PVAm选择层的多层复合膜表现出显着提高的CO2渗透性(1887 CPU),同时具有略微提高的CO2 / N-2选择性(83)以及优异的结构稳定性。类似地,还开发了具有亲水性亲油性Pebax 1657选择性层的多层复合膜,以增强CO2分离性能。

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