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Plasmonic-Based Electrochemical Impedance Spectroscopy: Application to Molecular Binding

机译:基于等离子的电化学阻抗谱:在分子结合中的应用

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Plasmonic-based electrochemical impedance spectroscopy (P-EIS) is developed to investigate molecular binding on surfaces. Its basic principle relies on the sensitive dependence of surface plasmon resonance (SPR) signal on surface charge density, which is modulated by applying an ac potential to a SPR chip surface. The ac component of the SPR response gives the electrochemical impedance, and the dc component provides the conventional SPR detection. The plasmonic-based impedance measured over a range of frequency is in quantitative agreement with the conventional electrochemical impedance. Compared to the conventional SPR detection, P-EIS is sensitive to molecular binding taking place on the chip surface and less sensitive to bulk refractive index changes or nonspecific binding. Moreover, this new approach allows for simultaneous SPR and surface impedance analysis of molecular binding processes.
机译:基于等离子的电化学阻抗谱(P-EIS)用于研究表面上的分子结合。它的基本原理依赖于表面等离子体激元共振(SPR)信号对表面电荷密度的敏感依赖性,表面电荷密度是通过将交流电势施加到SPR芯片表面进行调制的。 SPR响应的交流分量提供电化学阻抗,而直流分量提供常规的SPR检测。在一定频率范围内测得的基于等离激元的阻抗与常规电化学阻抗在数量上一致。与传统的SPR检测相比,P-EIS对芯片表面上发生的分子结合敏感,对整体折射率变化或非特异性结合不那么敏感。而且,这种新方法允许同时进行分子结合过程的SPR和表面阻抗分析。

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