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Sensitive detection of voltage transients using differential intensity surface plasmon resonance system

机译:使用差分强度表面等离子体共振系统灵敏地检测电压瞬变

摘要

This paper describes theoretical and experimental study of the fundamentals of using surface plasmon resonance (SPR) for label-free detection of voltage. Plasmonic voltage sensing relies on the capacitive properties of metal-electrolyte interface that are governed by electrostatic interactions between charge carriers in both phases. Externally-applied voltage leads to changes in the free electron density in the surface of the metal, shifting the SPR position. The study shows the effects of the applied voltage on the shape of the SPR curve. It also provides a comparison between the theoretical and experimental response to the applied voltage. The response is presented in a universal term that can be used to assess the voltage sensitivity of different SPR instruments. Finally, it demonstrates the capacity of the SPR system in resolving dynamic voltage signals; a detection limit of 10mV with a temporal resolution of 5ms is achievable. These findings pave the way for the use of SPR systems in the detection of electrical activity of biological cells.
机译:本文介绍了使用表面等离振子共振(SPR)进行无标记电压检测的基础知识的理论和实验研究。等离子体电压感测依赖于金属-电解质界面的电容特性,该特性受两相电荷载流子之间的静电相互作用控制。外部施加的电压会导致金属表面的自由电子密度发生变化,从而改变SPR位置。研究表明施加电压对SPR曲线形状的影响。它还提供了对施加电压的理论和实验响应之间的比较。响应以通用术语表示,可用于评估不同SPR仪器的电压灵敏度。最后,它演示了SPR系统解决动态电压信号的能力。检测极限为10mV,时间分辨率为5ms。这些发现为在生物细胞电活动检测中使用SPR系统铺平了道路。

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