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Ultrathin solid polymer electrolyte PEl/Pebax2533/AgBF4 composite membrane for propylene/propane separation

机译:用于丙烯/丙烷分离的超薄固体聚合物电解质PEl / Pebax2533 / AgBF4复合膜

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In this paper, a new solid polymer electrolyte PEI/Pebax2533/AgBF4 composite membrane (PEI: polyetherimide; Pebax2533: Polynylonl2/tetramethylene oxide block copolymer, PA12-PTMO) is prepared with complexing method. When the external surface of Pebax2533 layer is immersed into AgBF4 solution, silver salt transfers into Pebax2533 layer according to the complexation with ether oxygens in Pebax2533 backbone, and an ultrathin solid polymer electrolyte layer is formed. When AgBF4 concentration is less than the threshold silver concentration C*(4.5 mol/L), because of low silver salt content in the solid polymer electrolyte layer, no carrier-facilitated transport phenomenon occurs. But for PEI/Pebax2533/AgBF4 composite membrane prepared with AgBF4 concentration above C*(4.5 mol/L), the percolation channels for carrier-facilitated transport are formed and the preferential adsorbed propylene molecules can transfer across the membrane easily, which result in an increase of propylene permeance and a sharp decrease of propane permeance. According to TEM observation, an ultrathin solid polymer electrolyte layer of 100-200 nm thickness exists in the external surface of the Pebax2533 layer of PEI/Pebax2533/AgBF4 composite membrane.
机译:本文采用络合法制备了一种新型的固体高分子电解质PEI / Pebax2533 / AgBF4复合膜(PEI:聚醚酰亚胺; Pebax2533:Polynylonl2 /四亚甲基氧化物嵌段共聚物,PA12-PTMO)。当将Pebax2533层的外表面浸入AgBF4溶液中时,银盐根据与Pebax2533主链中的醚氧的络合而转移到Pebax2533层中,并形成超薄固体聚合物电解质层。当AgBF 4浓度小于阈值银浓度C *(4.5 mol / L)时,由于固体聚合物电解质层中的银盐含量低,所以不会发生载流子促进的迁移现象。但是,对于AgBF4浓度高于C *(4.5 mol / L)制备的PEI / Pebax2533 / AgBF4复合膜,会形成用于载体促进运输的渗透通道,并且优先吸附的丙烯分子可以轻松地跨膜转移,从而导致丙烯渗透率增加,丙烷渗透率急剧下降。根据TEM观察,PEI / Pebax2533 / AgBF4复合膜的Pebax2533层的外表面存在厚度为100-200nm的超薄固体聚合物电解质层。

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