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首页> 外文期刊>Angewandte Chemie >The Strong Influence of Structure Polymorphism on the Conductivity of Peptide Fibrils
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The Strong Influence of Structure Polymorphism on the Conductivity of Peptide Fibrils

机译:结构多态性对肽原纤维电导率的强烈影响

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摘要

Peptide fibril nanostructures have been advocated as components of future biotechnology and nanotechnology devices. However, the ability to exploit the fibril functionality for applications, such as catalysis or electron transfer, depends on the formation of well-defined architectures. Fibrils made of peptides substituted with aromatic groups are described presenting efficient electron delocalization. Peptide self-assembly under various conditions produced polymorphic fibril products presenting distinctly different conductivities. This process is driven by a collective set of hydrogen bonding, electrostatic, and p-stacking interactions, and as a result it can be directed towards formation of a distinct polymorph by using the medium to enhance specific interactions rather than the others. This method facilitates the detailed characterization of different polymorphs, and allows specific conditions to be established that lead to the polymorph with the highest conductivity.
机译:肽原纤维纳米结构已被提倡为未来生物技术和纳米技术设备的组成部分。但是,利用原纤维功能进行应用(例如催化或电子转移)的能力取决于定义良好的体系结构。描述了由被芳族基团取代的肽制成的原纤维,其呈现有效的电子离域作用。肽在各种条件下的自组装产生具有明显不同电导率的多晶型原纤维产物。该过程由氢键键合,静电和p堆积相互作用的集合驱动,因此,可以通过使用介质而不是其他介质来增强特定的相互作用,从而直接形成独特的多晶型物。该方法有助于详细表征不同的多晶型物,并允许建立导致多晶型物具有最高电导率的特定条件。

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