REDUCTION OF INFLUENCE OF NEAR-ELECTRODE CHARGE TRANSFER RESISTANCE IN BIOSENSOR CONDUCTOMETRIC MEASURING TRANSDUCERS

Q3 Energy
P. Borshchov, V. Melnyk
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引用次数: 0

Abstract

The article proposes the further development of a method of reducing the error of measuring local changes in the electrical conductivity of electrolyte solutions caused by a change in the background electrical conductivity of the measuring medium. Such an error occurs in differential conductometric biosensors with working and reference transducers, if their electrical parameters differ significantly. In contrast to the previously known, the described method takes into account the influence of near-electrode charge transfer resistances, which becomes especially noticeable when there is a significant difference in the values of these parameters of the converters. The goal is to ensure deep suppression of the influence of background changes in electrical conductivity of solutions under significant differences in the reactive and active component impedances of pairs of sensor transducers, including near-electrode charge transfer resistances. Mathematical expressions characterizing the process of bringing the bridge measuring circuit to a specific state of quasi-balance, in which the influence of changes in the background electrical conductivity of electrolyte solutions is minimal, are considered. Formulas for calculating the voltage parameters on the reference converter have been obtained, which make it possible to establish the indicated mode of the measuring circuit. A technique for determining the values of charge transfer resistances using the results of additional measurements of the impedance parameters of the converters at a frequency higher than the operating frequency is proposed. The results of research on suppressing the effect of changes in the background electrical conductivity of the solution in the differential conductometric channel using a computer model are presented, which showed the possibility of significantly reducing the effect of changes in the background electrical conductivity of the solution compared to the known method. References 9, figures 2, table 1.
降低生物传感器电导测量传感器中近电极电荷转移电阻的影响
本文提出进一步发展一种方法,以减少由于测量介质的背景电导率变化而引起的电解质溶液电导率局部变化的测量误差。这种误差发生在具有工作传感器和参考传感器的差分电导生物传感器中,如果它们的电参数显著不同。与先前已知的方法相反,所描述的方法考虑了近电极电荷转移电阻的影响,当转换器的这些参数值存在显着差异时,这种影响变得特别明显。目标是确保深度抑制背景变化对溶液电导率的影响,在传感器对的有源和有功元件阻抗(包括近电极电荷转移电阻)存在显著差异的情况下。考虑了将桥式测量电路带到准平衡特定状态的数学表达式,在这种状态下,电解质溶液的背景电导率变化的影响最小。给出了参考变换器上电压参数的计算公式,从而建立了测量电路的指示模式。提出了一种利用在高于工作频率的频率下对变换器的阻抗参数进行附加测量的结果来确定电荷转移电阻值的技术。本文介绍了利用计算机模型抑制差分电导通道中溶液背景电导率变化影响的研究结果,表明与已知方法相比,有可能显著降低溶液背景电导率变化的影响。参考文献9,图2,表1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Technical Electrodynamics
Technical Electrodynamics Energy-Energy Engineering and Power Technology
CiteScore
1.80
自引率
0.00%
发文量
72
审稿时长
4 weeks
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