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电化学纳米传感器集成系统设计的等效阻抗模型。

Equivalent Impedance Models for Electrochemical Nanosensor-Based Integrated System Design.

机构信息

Microelectronic Circuits Centre Ireland, T12 R5CP Cork, Ireland.

出版信息

Sensors (Basel). 2021 May 8;21(9):3259. doi: 10.3390/s21093259.

Abstract

Models of electrochemical sensors play a critical role for electronic engineers in designing electrochemical nanosensor-based integrated systems and are also widely used in analyzing chemical reactions to model the current, electrical potential, and impedance occurring at the surface of an electrode. However, the use of jargon and the different perspectives of scientists and electronic engineers often result in different viewpoints on principles of electrochemical models, which can impede the effective development of sensor technology. This paper is aimed to fill the knowledge gap between electronic engineers and scientists by providing a review and an analysis of electrochemical models. First, a brief review of the electrochemical sensor mechanism from a scientist's perspective is presented. Then a general model, which reflects a more realistic situation of nanosensors is proposed from an electronic engineer point of view and a comparison between the Randles Model is given with its application in electrochemical impedance spectroscopy and general sensor design. Finally, with the help of the proposed equivalent model, a cohesive explanation of the scan rate of cyclic voltammetry is discussed. The information of this paper can contribute to enriching the knowledge of electrochemical sensor models for scientists and is also able to guide the electronic engineer on designing next-generation sensor layouts.

摘要

电化学传感器模型对于电子工程师在设计基于电化学纳米传感器的集成系统方面起着至关重要的作用,并且还广泛用于分析化学反应,以模拟电极表面发生的电流、电势能和阻抗。然而,行话的使用以及科学家和电子工程师不同的视角往往导致对电化学模型原理的不同观点,这可能会阻碍传感器技术的有效发展。本文旨在通过对电化学模型的综述和分析,填补电子工程师和科学家之间的知识空白。首先,从科学家的角度简要回顾了电化学传感器的工作机制。然后,从电子工程师的角度提出了一个更能反映纳米传感器实际情况的通用模型,并与兰德尔模型进行了比较,以及其在电化学阻抗谱和通用传感器设计中的应用。最后,借助所提出的等效模型,讨论了循环伏安法的扫描速率的一个有凝聚力的解释。本文的信息有助于丰富科学家对电化学传感器模型的认识,并且能够指导电子工程师设计下一代传感器布局。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2a0/8125801/84769da59d4e/sensors-21-03259-g001.jpg

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