Chemical Process Engineering, RWTH Aachen University , Turmstr. 46, 52064 Aachen, Germany.
ACS Appl Mater Interfaces. 2013 Nov 13;5(21):10445-55. doi: 10.1021/am403019y. Epub 2013 Oct 24.
Bipolar membranes are laminated anion and cation exchange membranes that split water at their interface very efficiently upon application of an electric field. This paper investigates the layer-by-layer (LbL) deposition of polyelectrolyte multilayers, as a tool to introduce molecularly thin catalyst groups at this interface of bipolar membranes. The bipolar membranes were prepared by first modifying an anion exchange membrane by consecutive dipping LbL assembly, then casting a thin highly charged intermediate layer followed by casting a cation exchange layer. The results reveal that polyelectrolytes of higher charge density coated on the anion exchange layer yield better performance. Several parameters of the LbL interface deposition were varied. Out of the investigated LbL assembly parameters, ionic strength and number of layers have shown the largest influence on catalytic activity as well as ionic selectivity. The membrane with two bilayers of poly(3,4-ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS) and poly(ethyleneimine) (PEI), where the PEI was prepared in 0.5 M NaCl, gave rise to the best performance. Surprisingly, detailed data analysis at low electrical potential suggests that the interface layers of a bipolar membrane play a major role in its permselectivity. Previously, only the bulk thickness of the anion and cation exchange membrane was assumed to influence the bipolar membrane selectivity.
双极膜是层压的阴离子和阳离子交换膜,在施加电场时,非常有效地在其界面处分解水。本文研究了层层(LbL)聚电解质多层的沉积,作为在双极膜的这种界面处引入分子薄的催化剂基团的工具。通过连续浸涂 LbL 组装首先修饰阴离子交换膜来制备双极膜,然后浇铸薄的高电荷中间层,然后浇铸阳离子交换层。结果表明,涂覆在阴离子交换层上的更高电荷密度的聚电解质产生更好的性能。改变了 LbL 界面沉积的几个参数。在所研究的 LbL 组装参数中,离子强度和层数对催化活性以及离子选择性的影响最大。具有两层聚(3,4-亚乙基二氧噻吩)聚(苯乙烯磺酸盐)(PEDOT:PSS)和聚(乙二胺)(PEI)的膜,其中 PEI 是在 0.5 M NaCl 中制备的,表现出最佳性能。令人惊讶的是,在低电势下的详细数据分析表明,双极膜的界面层在其选择性中起着重要作用。以前,仅假定阴离子和阳离子交换膜的体厚度会影响双极膜的选择性。