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3DOM Silica Composite Membrane Including Binary PAMPS-SPEES Polymer Electrolyte for DMFC

机译:包含用于DMFC的二元PAMPS-SPEES聚合物电解质的3DOM二氧化硅复合膜

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摘要

Three-dimensionally ordered macroporous (3DOM) silica composite membrane including a binary polymer [poly(2-acrylamido-2-methyl-1-propanesulphonic acid) (PAMPS)-sulphonated poly(1,4-phenylene ether ether sulphone) (SPEES)] was fabricated by stepwise filling method. In the PAMPS-SPEES composite membrane, SPEES coated 3DOM silica surface and PAMPS occupied the remaining vacancy. Therefore, the structure of PAMPS-SPEES in the 3DOM silica was a core-shell like structure. The methanol permeability of composite membrane was successfully reduced from 1.9 × 10{sup}(-6) to 3.2 × 10{sup}(-7) cm{sup}2 s{sup}(-1) at 30 ℃ by the stepwise filling of SPEES and then PAMPS. The proton conductivity of SPEES-3DOM composite membrane was also improved by the PAMPS impregnation. However, the increment was not very notable regardless of the high conductivity of PAMPS. This result suggests that the proton transfer in 3DOM composite membrane mainly depends on the SPEES phase coating on 3DOM pore surface. Consequently, PAMPS-SPEES-3DOM composite membrane exhibited more than ten times higher performance than Nafion as an electrolyte membrane for direct methanol fuel cells (DMFCs).
机译:三维排序的大孔(3DOM)二氧化硅复合膜,包括二元聚合物[聚(2-丙烯酰胺基-2-甲基-1-丙烷磺酸)(PAMPS)-磺化聚(1,4-亚苯基醚醚砜)(SPEES)通过逐步填充法制造。在PAMPS-SPEES复合膜中,SPEES涂层的3DOM二氧化硅表面和PAMPS占据了剩余的空位。因此,在3DOM二氧化硅中的PAMPS-SPEES的结构为核-壳状结构。在30℃逐步将复合膜的甲醇渗透性从1.9×10 {sup}(-6)成功降低到3.2×10 {sup}(-7)cm {sup} 2 s {sup}(-1)。先填充SPEES,然后填充PAMPS。 SAMPES-3DOM复合膜的质子传导性也通过PAMPS浸渍得到了改善。但是,无论PAMPS的电导率高如何,增量都不是很明显。该结果表明3DOM复合膜中的质子转移主要取决于3DOM孔表面上的SPEES相涂层。因此,作为直接甲醇燃料电池(DMFC)的电解质膜,PAMPS-SPEES-3DOM复合膜的性能比Nafion高出十倍以上。

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