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Enhancing the anion-transport selectivity of multilayer polyelectrolyte membranes by templating with Cu2+

机译:通过Cu2 +模板化来提高多层聚电解质膜的阴离子传输选择性

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摘要

Alternating deposition of oppositely charged polyelectrolytes on porous supports is an attractive way to synthesize selective, ultrathin ion-separation membranes. This study reports the use Of Cu2+ as a template in poly(acrylic acid) (PAA)/poly(allylamine hydrochloride) (PAH) membranes to control fixed charge density and hence enhance anion-transport selectivity. Alternating deposition of PAA partially complexed with Cu2+ and PAH on porous alumina supports followed by removal of Cu2+ and deprotonation results in fixed -COO- sites in these films. Cu2+-templated PAA/PAH membranes show a 4-fold increase in Cl-/SO42- transport selectivity compared to pure PAA/PAH membranes deposited under similar conditions. Cross-linking of these templated membranes further increases Cl-/SO42- selectivity by an order of magnitude to a value of 610. Changing the top layer of cross-linked, Cu2+-templated membranes from negatively charged PAA to positively charged PAH decreases Cl-/SO42- selectivity 10-fold, indicating that Donnan repulsion from a negatively charged surface is a major factor behind selectivity. Modeling studies suggest that selectivity is due to both Donnan exclusion and diffusivity differences among ions. [References: 65]
机译:在多孔载体上交替沉积带相反电荷的聚电解质是合成选择性超薄离子分离膜的一种有吸引力的方法。这项研究报告了在聚丙烯酸(PAA)/聚烯丙胺盐酸盐(PAH)膜中使用Cu2 +作为模板来控制固定电荷密度,从而提高阴离子传输选择性。在多孔氧化铝载体上交替沉积与Cu2 +和PAH部分络合的PAA,然后去除Cu2 +和去质子化,在这些薄膜中形成固定的-COO-位。与在类似条件下沉积的纯PAA / PAH膜相比,Cu2 +模板的PAA / PAH膜在Cl- / SO42-转运选择性上提高了4倍。这些模板化膜的交联进一步将Cl- / SO42-选择性提高一个数量级,达到610的值。将交联的Cu2 +模板化膜的顶层从带负电的PAA变为带正电的PAH,可降低Cl- / SO42-的选择性。 / SO42-选择性是10倍,表明Donnan从带负电的表面排斥是选择性的主要因素。建模研究表明,选择性是由于Donnan排斥和离子之间的扩散率差异所致。 [参考:65]

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