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Differential cyclic voltammetry - a novel technique for selective and simultaneous detection using redox cyling based sensors

机译:微分循环伏安法-一种使用基于氧化还原循环的传感器进行选择性和同时检测的新技术

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Redox cycling (RC) is an effect that is used to amplify electrochemical signals. However, traditional techniques such as cyclic voltammetry (CV) do not provide clear insight for a mixture of multiple redox couples while RC is applied. Thus, we have developed a new measurement technique which delivers electrochemical spectra of all reversible redox couples present based on concentrations and standard potentials. This technique has been named differential cyclic voltammetry (DCV). We have fabricated micrometer-sized interdigitated electrode (IDE) sensors to conduct DCV measurements in mixtures of 1mM catechol and 4mM [Ru(NH3)6]Cl3. To simulate the electrochemical behavior of these sensors we have also developed a finite element model (FEM) in Comsol®. The experimental data corresponds to the calculated spectra obtained from simulations. Additionally, the measured spectra can be used to easily derive standard potentials and concentrations simultaneously and selectively.
机译:氧化还原循环(RC)是一种用于放大电化学信号的效应。但是,传统技术(例如循环伏安法(CV))无法在应用RC时提供对多个氧化还原对混合物的清晰了解。因此,我们开发了一种新的测量技术,该技术可根据浓度和标准电势提供存在的所有可逆氧化还原对的电化学光谱。该技术已被称为微分循环伏安法(DCV)。我们制造了微米尺寸的叉指电极(IDE)传感器,以1mM邻苯二酚和4mM [Ru(NH 3 6 ] Cl 3的混合物进行DCV测量。为了模拟这些传感器的电化学行为,我们还开发了Comsol ®中的有限元模型(FEM)。实验数据对应于从模拟获得的计算光谱。另外,测得的光谱可用于轻松地同时,选择性地导出标准电势和浓度。

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