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通过由二茂铁连接末端的双螺旋肽自组装单分子层进行的电子转移。

Electron transfer through a self-assembled monolayer of a double-helix peptide with linking the terminals by ferrocene.

作者信息

Okamoto Shinpei, Morita Tomoyuki, Kimura Shunsaku

机构信息

Department of Material Chemistry, Graduate School of Engineering, Kyoto University, Kyoto-Daigaku-Katsura, Nishikyo-ku, Kyoto 615-8510, Japan.

出版信息

Langmuir. 2009 Mar 3;25(5):3297-304. doi: 10.1021/la8034962.

Abstract

A unique molecular structure, a double-helix peptide, was self-assembled on gold, and the electron transfer through the monolayer was studied. The double-helix peptide consists of two 9mer 3(10)-helical peptide chains having a disulfide group at each N terminal and being linked by a ferrocene dicarboxylic acid between the C terminals. Each helical peptide chain has three naphthyl groups in a linear arrangement along the helix. The monolayer properties and the electron transfer from the ferrocene unit to gold were studied with reference peptides with a similar double helix but without naphthyl groups, a single helix with a dicarboxylic ferrocene unit, and a single helix with a monocarboxylic ferrocene unit. It was demonstrated that the naphthyl groups on the side chains had no effect on electron transfer, and the electron-transfer rate in the double-helix monolayer was not promoted, despite the two electron pathways in the molecule. We propose that in the double-helix monolayer, molecular motions are suppressed, possibly by its rigid structure tethered by the two linkers on gold to cancel out acceleration effects of the 2-fold electron pathways and the ferrocene substitution number. The factors that affect the electron-transfer reaction across the helical peptide SAMs are discussed in depth.

摘要

一种独特的分子结构,即双螺旋肽,在金表面自组装形成,并且对通过该单分子层的电子转移进行了研究。双螺旋肽由两条9聚体3(10)-螺旋肽链组成,每条肽链的N端都有一个二硫基团,C端之间通过二茂铁二羧酸相连。每条螺旋肽链沿螺旋方向有三个萘基呈线性排列。通过具有相似双螺旋但没有萘基的参考肽、带有二羧酸二茂铁单元的单螺旋肽以及带有单羧酸二茂铁单元的单螺旋肽,对单分子层性质以及从二茂铁单元到金的电子转移进行了研究。结果表明,侧链上的萘基对电子转移没有影响,尽管分子中有两条电子传输路径,但双螺旋单分子层中的电子转移速率并未得到促进。我们认为,在双螺旋单分子层中,分子运动受到抑制,这可能是由于其刚性结构通过金上的两个连接基团固定,抵消了双电子路径和二茂铁取代数的加速效应。深入讨论了影响穿过螺旋肽自组装单分子层的电子转移反应的因素。

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