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Sequence dependent proton conduction in self-assembled peptide nanostructures

机译:序列相关的质子传导自组装多肽纳米结构

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The advancement of diverse electrochemistry technologies depends on the development of novel proton conducting polymers. Inspired by the efficacy of proton transport through proteins, we show in this work that self-assembling peptide nanostructures may be a promising alternative for such organic proton conducting materials. We demonstrate that aromatic amino acids, which participate in charge transport in nature, unprecedentedly promote proton conduction under both high and low relative humidity conditions for D, L alpha-cyclic peptide nanotubes. For dehydrated networks long-range order of the assemblies, induced by the aromatic side chains, is shown to be a dominating factor for promoting conductivity. However, for hydrated networks this order of effect is less significant and conductivity can be improved by the introduction of proton donating carboxylic acid peptide side chains in addition to the aromatic side chains despite the lower order of the assemblies. Based on these observations, a novel cyclic peptide that incorporates non-natural naphthyl side chains was designed. Self-assembled nanotubes of this peptide show greatly improved dehydrated conductivity, while maintaining high conductivity under hydrated conditions. We envision that the demonstrated modularity and versatility of these bio inspired nanostructures will make them extremely attractive building blocks for the fabrication of devices for energy conversion and storage applications, as well as other applications that involve proton transport, whether dry or wet conductivity is desired.
机译:不同的电化学的发展技术的发展依赖于小说质子导电聚合物。通过蛋白质功效的质子运输,我们显示在这个工作,自组装肽纳米结构可能是一个不错的选择这种有机质子导电材料。演示,芳香族氨基酸参与电荷传输性质,前所未有的促进下质子传导高和低相对湿度条件对于D, L alpha-cyclic肽纳米管。脱水网络远程的顺序组件,由芳香族侧链,显示一个主导因素促进导电性。的效果是不那么重要可以提高电导率的介绍质子的捐赠羧酸肽除了芳香族侧链链尽管低阶的程序集。在这些观察,小说环肽包含非天然的萘设计链。这种肽显示大大提高脱水导电率,同时保持高导电性在水分条件下。展示了模块化和多功能性生物纳米结构会让他们灵感极具吸引力的构建块对能源转换和制造的设备存储应用程序,以及其他应用程序涉及质子运输,干或湿电导率是否满意。

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