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电化学表面等离子体共振:基本形式和实验验证。

Electrochemical surface plasmon resonance: basic formalism and experimental validation.

机构信息

Center for Bioelectronics and Biosensors, Biodesign Institute, Arizona State University, 1001 South McAllister Avenue, P.O. Box 875801, Tempe, Arizona 85287-5801, USA.

出版信息

Anal Chem. 2010 Feb 1;82(3):935-41. doi: 10.1021/ac902178f.

Abstract

A quantitative formalism of electrochemical surface plasmon resonance (EC-SPR) was developed for studying electrochemical reactions. The EC-SPR signal from the reactions was found to be a convolution function of electrochemical current, and therefore, EC-SPR is a powerful tool that can provide information similar to the conventional current-based electrochemical techniques. As an example, potential-sweep EC-SPR was analyzed in details and was found to provide a new way to measure convolution voltammetry without the need of numerical integration. In addition to the benefits provided by the conventional convolution voltammetry, the EC-SPR has several unique advantages, including (1) spatial resolution that is particularly attractive for studying heterogeneous reactions, (2) optical properties of the reactions species that may assist identification of reaction mechanisms, and (3) high surface sensitivity for studying surface binding of the reaction species. Experiments and numerical simulations were carried out for a model system, hexaammineruthenium(III) chloride. The simultaneously measured electrochemical current and SPR response confirmed the relationship between the two quantities, and the numerical simulations were in excellent agreement with the measurements.

摘要

电化学表面等离子体共振(EC-SPR)的定量形式被开发出来,用于研究电化学反应。反应的 EC-SPR 信号被发现是电化学电流的卷积函数,因此,EC-SPR 是一种强大的工具,可以提供类似于传统电流电化学技术的信息。作为一个例子,详细分析了电位扫描 EC-SPR,并发现它提供了一种无需数值积分即可测量卷积伏安法的新方法。除了传统卷积伏安法提供的好处之外,EC-SPR 还具有几个独特的优点,包括(1)特别适合研究非均相反应的空间分辨率,(2)反应物种的光学性质可能有助于确定反应机制,以及(3)用于研究反应物种表面结合的高表面灵敏度。对模型系统六氨合钌(III)氯化物进行了实验和数值模拟。同时测量的电化学电流和 SPR 响应证实了这两个量之间的关系,数值模拟与测量结果非常吻合。

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