Cytochrome C as a benchmark system for a two-layer gold surface with improved surface-enhancement for spectro-electrochemistry

C. Nowak, D. Schach, Marc Großerüschkamp, W. Knoll, R. Naumann
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Abstract

A two-layer gold surface is developed for use with electrochemistry followed by surface-enhanced infrared ab- sorption spectroscopy (SEIRAS) consisting of a conducting underlayer onto which Au nanoparticles (AuNPs) are grown by self-catalyzed electroless deposition. AuNPs are grown on protruding substructures of the 25 nm thin underlayer. The enhance- ment factor of the two-layer gold surface is controlled by the growth conditions. Cytochrome c adsorbed to a self-assembled monolayer of mercaptoethanol is used as a benchmark system for the investigation of complex heme proteins from the respira- tory chain such as cytochrome c oxidase and the bc1 complex. Under optimum conditions the absorbance of the amide I band of cytochrome c is increased by a factor of 5 vs. classical SEIRAS surface. Reversible reduction/oxidation of cytochrome c on the two-layer gold surface is shown to take place by cyclic voltammetry.
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细胞色素C作为两层金表面的基准体系,具有改进的表面增强,用于光谱电化学
开发了一种用于电化学的两层金表面,然后是表面增强红外吸附光谱(SEIRAS),由导电下层组成,通过自催化化学沉积在其上生长金纳米粒子(AuNPs)。aunp生长在25 nm薄底层的突出亚结构上。两层金表面的增强因子受生长条件的控制。细胞色素c吸附在自组装的巯基乙醇单层上,被用作研究呼吸链上复杂血红素蛋白的基准系统,如细胞色素c氧化酶和bc1复合物。在最佳条件下,细胞色素c的酰胺I波段的吸光度比经典SEIRAS表面增加了5倍。循环伏安法表明细胞色素c在两层金表面的可逆还原/氧化发生。
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