材料科学
相对湿度
化学物理
电子
质子
电导
热传导
纳米结构
载流子
纳米技术
凝聚态物理
光电子学
化学
热力学
物理
复合材料
量子力学
作者
Moran Amit,S. Appel,Rotem Cohen,Ge Cheng,Ian W. Hamley,Nurit Ashkenasy
标识
DOI:10.1002/adfm.201401111
摘要
Protons and electrons are being exploited in different natural charge transfer processes. Both types of charge carriers could be, therefore, responsible for charge transport in biomimetic self‐assembled peptide nanostructures. The relative contribution of each type of charge carrier is studied in the present work for fibrils self‐assembled from amyloid‐ β derived peptide molecules, in which two non‐natural thiophene‐based amino acids are included. It is shown that under low humidity conditions both electrons and protons contribute to the conduction, with current ratio of 1:2 respectively, while at higher relative humidity proton transport dominates the conductance. This hybrid conduction behavior leads to a bimodal exponential dependence of the conductance on the relative humidity. Furthermore, in both cases the conductance is shown to be affected by the peptide folding state under the entire relative humidity range. This unique hybrid conductivity behavior makes self‐assembled peptide nanostructures powerful building blocks for the construction of electric devices that could use either or both types of charge carriers for their function.
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