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首页> 外文期刊>International journal of hydrogen energy >The effective methanol-blocking and proton conductivity membranes based on sulfonated poly (ether ether ketone ketone) and polyorganosilicon with functional groups
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The effective methanol-blocking and proton conductivity membranes based on sulfonated poly (ether ether ketone ketone) and polyorganosilicon with functional groups

机译:基于磺化聚(醚醚酮酮)和具有官能团的聚有机硅氧烷的有效甲醇阻断和质子电导率膜

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摘要

To solve the conflict between high proton conductivity and low methanol crossover of pristine sulfonated aromatic polymer membranes, the polyorganosilicon doped sulfonated poly (ether ether ketone ketone) (SPEEKK) composite membranes were prepared by introducing polyorganosilicon additive with various functional groups into SPEEKK in this study. Scanning electron microcopy (SEM) images showed the obtained membranes were compact. No apparent agglomerations, cracks and pinholes were observed in the SEM images of composite membranes. The good compatibility between polymer and additive led to the interconnection, thus producing new materials with great characteristics and enhanced performance. Besides, the dual crosslinked structure could be formed in composite membranes through the condensation of silanols and the strong interaction between matrix and additive. The formation of dual crosslinked structure optimized the water absorption, enhanced the hydrolytic stability and oxidative stability of membranes. Especially, the incorporation of additive improved the strength and flexibility of composite membranes at the same time, meaning that the life of the composite membranes might be extended during the fuel cell operation. Meanwhile, the proton conductivity improved with increasing additive content due to the loading of more available acidic groups. It is noteworthy that at 25% additive loading, the proton conductivity reached a maximum value of 5.4 x 10(-2) S cm(-1) at 25 degrees C, which exceeded the corresponding value of Nafion@ 117 (5.0 x 10(-2) S cm(-1)) under same experimental conditions. The composite membrane with 20 wt% additive was found to produce the highest selectivity (1.22 x 10(5) S cm(-3)) with proton conductivity of 4.70 x 10(-2) S cm(-3) and methanol diffusion coefficient of 3.85 x 10(-2) cm(2) s(-1), suggesting its best potential as proton exchange membrane for direct methanol fuel cell application. The main novelty of our work is providing a feasible and environment-friendly way to prepare the self-made polyorganosilicon with various functional groups and introducing it into SPEEKK to fabricate the dual crosslinked membranes. This design produces new materials with outstanding performance. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:为了解决高质子电导率和原始磺化芳族聚合物膜的低甲醇横跨之间的猝灭,通过将多体硅氧硅添加剂与各种官能团引入本研究中的诸如Speekk来制备聚有机硅氧烷掺杂的磺化聚(醚醚酮酮)(Speekk)复合膜。 。扫描电子显微镜(SEM)图像显示所获得的膜是紧凑的。在复合膜的SEM图像中没有观察到明显的附聚物,裂缝和针孔。聚合物与添加剂之间的良好兼容性导致互连,从而产生具有良好特性和增强性能的新材料。此外,可以通过硅烷醇的缩合和基质和添加剂之间的强相互作用在复合膜中形成双交联结构。双交联结构的形成优化了吸水性,增强了膜的水解稳定性和氧化稳定性。特别是,添加剂的掺入同时改善了复合膜的强度和柔韧性,这意味着在燃料电池操作期间可以延长复合膜的寿命。同时,由于载入更可用的酸性基团,质子电导率随着添加剂含量的增加而改善。值得注意的是,在25%的添加剂负载下,在25℃下,质子电导率达到5.4×10(-2)厘米(-1)的最大值,超过Nafion @ 117的相应值(5.0 x 10( -2)S cm(-1))在相同的实验条件下。发现具有20wt%添加剂的复合膜,产生最高的选择性(1.22×10(5)厘米(-3)),具有4.70×10(-2)Cm(-3)和甲醇扩散系数的质子电导率3.85×10(-2)厘米(2)厘米(-1),表明其作为Proton交换膜的最佳潜力,用于直接甲醇燃料电池应用。我们的工作的主要新颖性是提供一种可行和环保的方式来制备具有各种官能团的自制聚有机体,并将其引入特殊性以制造双交联膜。这种设计生产具有出色性能的新材料。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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