Performance Analysis of Optimized Screen-Printed Electrodes for Electrochemical Sensing

电极 恒电位仪 材料科学 参比电极 工作电极 水平扫描速率 生物传感器 分析化学(期刊) 光电子学 循环伏安法 电化学 纳米技术 化学 色谱法 物理化学
作者
Nurul Asmawati Roslan,Rosminazuin Ab Rahim,Aliza Aini Md Ralib,Nor Farahidah Za’bah,Anis Nurashikin Nordin,Mohd Saiful Riza Bashri,Muhammad Irsyad Suhaimi,Zambri Samsudin,Lim Chee Ming,Gandi Sugandi
出处
期刊:International Journal of Integrated Engineering [Penerbit UTHM]
卷期号:14 (3)
标识
DOI:10.30880/ijie.2022.14.03.027
摘要

The screen-printed electrode (SPE) sensor is widelyemployedin food analysis, environmental health monitoring, disease detection, toxin detectionandother applications.As it is crucial for the SPE sensor to have an outstanding performance, this study examined the effects of manipulatingthe working electrode(WE)radius, gap spacing between electrodes, and counter electrode (CE) width on the performance of an SPE sensor.Finite element simulation on various geometrical dimensions was done prior to screen-printed electrode SPE sensor’s fabrication at Jabil Circuits Sdn Bhd.The electrodes performance is measured throughcyclic voltammetry (CV)using a potentiostat at an optimum scan rate of0.01 V/s andavoltammetry potential window range of -0.2 to 0.8 Vin 0.01 MPhosphate Buffered Saline (PBS) solution.It is discovered that adjusting the WE area and the gap separation between the electrodes had the most impact on sensor performance compared to varying the CE width. In both simulation and CV measurements, WE with the highestradius of 0.9 mmwith aneffectivearea of 2.54 mm2, and the smallestgap spacing of 0.7 mm has shown the highest current density of 0.04 A/mm2(simulation) and 0.3 μA/mm2(experiment) which can be translated as the highest sensitivity for the SPE sensor.Further CV measurement in nicotine sensing application has proven that the SPE sensor can effectively detect the nicotine oxidation indicating itspromising potential as a biosensor. Combination of optimum SPE dimension together with suitableelectrode modificationprocessservesas the basis for an effective and sensitive SPE sensor for various biosensing applications.

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