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Facile Large-Scale Fabrication of Proton Conducting Channels

机译:大规模制造质子传导通道

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A new approach to the facile large-scale fabrication of robust silicon membranes with artificial proton conducting channels is presented. Ordered two-dimensional macroporous silicon was rendered proton conducting by growing a thick uniform polyelectrolyte brush using surface-initiated atom transfer radical polymerization throughout the porous matrix. The fabricated silicon-poly(sulfopropyl methacrylate) hybrid membranes were evaluated for their proton conductivity, ion exchange capacity, and water uptake. With proton conductivities in the range of 10~(-2) S/cm, these proof-of-concept experiments highlight a promising alternative for producing tailorable proton conducting membranes. This approach constitutes a benchmark for the preparation and study of model systems and, in addition, for the large-scale fabrication of membranes suitable for a wide range of technological applications.
机译:提出了一种新的方法,可以方便地大规模制造带有人造质子传导通道的坚固的硅膜。通过在整个多孔基体中使用表面引发的原子转移自由基聚合反应,通过生长厚而均匀的聚电解质刷,使有序的二维大孔硅质子导电。评价所制造的硅-聚(甲基丙烯酸磺丙酯)杂化膜的质子传导性,离子交换容量和吸水率。这些概念验证实验的质子电导率在10〜(-2)S / cm的范围内,为生产可定制的质子传导膜提供了有希望的替代方法。这种方法构成了模型系统的准备和研究的基准,此外,它还适合大规模制造适用于各种技术应用的膜。

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