Electrochemical Performance of Micropillar Array Electrodes in Microflows

被引:16
|
作者
Liu, Bo [1 ]
Lv, Chuanwen [1 ]
Chen, Chaozhan [1 ]
Ran, Bin [1 ]
Lan, Minbo [2 ]
Chen, Huaying [1 ]
Zhu, Yonggang [1 ]
机构
[1] Harbin Inst Technol Shenzhen, Ctr Microflows & Nanoflows, Shenzhen 518000, Peoples R China
[2] East China Univ Sci & Technol, Shanghai Key Lab Funct Mat Chem, Sch Chem & Mol Engn, Shanghai 200237, Peoples R China
基金
中国国家自然科学基金;
关键词
microchip-based electrochemical detection system; micropillars array electrode; numerical simulation; tail effect; CHANNEL MICROBAND ELECTRODES; DISK MICROELECTRODE; IN-SITU; SIMULATION; VOLTAMMETRY; TRANSPORT; FABRICATION; ASSEMBLIES; MICROCHIP; REGIMES;
D O I
10.3390/mi11090858
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The microchip-based electrochemical detection system (mu EDS) has attracted plenty of research attention due to its merits including the capability in high-density integration, high sensitivity, fast analysis time, and reduced reagent consumption. The miniaturized working electrode is usually regarded as the core component of the mu EDS, since its characteristic directly determines the performance of the whole system. Compared with the microelectrodes with conventional shapes such as the band, ring and disk, the three-dimensional (3D) micropillar array electrode (mu AE) has demonstrated significant potential in improving the current response and decreasing the limits of detection due to its much larger reaction area. In this study, the numerical simulation method was used to investigate the performance of the mu EDS, and both the geometrical and hydrodynamic parameters, including the micropillars shape, height, arrangement form and the flow rate of the reactant solution, were taken into consideration. The tail effect in mu AEs was also quantitatively analyzed based on a pre-defined parameter of the current density ratio. In addition, a PDMS-based 3D mu AE was fabricated and integrated into the microchannel for the electrochemical detection. The experiments of cyclic voltammetry (CV) and chronoamperometry (CA) were conducted, and a good agreement was found between the experimental and simulation results. This study would be instructive for the configuration and parameters design of the mu EDS, and the presented method can be adopted to analyze and optimize the performance of nanochip-based electrochemical detection system (nEDS).
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Electrochemical determination of propranolol by using modified screen-printed electrodes
    Mohammadi, Sayed Zia
    Tajik, Somayeh
    Beitollahi, Hadi
    INDIAN JOURNAL OF CHEMICAL TECHNOLOGY, 2020, 27 (01) : 73 - 78
  • [22] Electrochemical Supercapacitive Performance of Spray-Deposited NiO Electrodes
    Yadav, Abhijit A.
    Chavan, U. J.
    JOURNAL OF ELECTRONIC MATERIALS, 2018, 47 (07) : 3770 - 3778
  • [23] An electrochemical oscillatory flow reactor with pillar array electrodes improving mass transfer in electrosynthesis
    Vranckaert, Michiel
    Gemoets, Hannes P. L.
    Dangreau, Ruben
    Van Aken, Koen
    Breugelmans, Tom
    Hereijgers, Jonas
    ELECTROCHIMICA ACTA, 2022, 436
  • [24] Electrochemical behavior of a gold nanoring electrode microfabricated on a silicon micropillar
    Yin, Haocheng
    Tan, Chao
    Siddiqui, Shabnam
    Arumugam, Prabhu U.
    SENSORS AND ACTUATORS B-CHEMICAL, 2019, 281 : 392 - 398
  • [25] Electrochemical Sensing Platform Integrated with Solid-state Reference Electrode Based on Indium Tin Oxide Interdigitated Array Electrodes
    Bae, Je Hyun
    Jeon, Hyeri
    Yang, Hyun Ju
    Kang, Chung Mu
    Han, Donghoon
    ELECTROANALYSIS, 2023, 35 (05)
  • [26] Design and Finite Element Model of a Microfluidic Platform with Removable Electrodes for Electrochemical Analysis
    Molina, Daniel E.
    Medina, Adan Schafer
    Beyenal, Haluk
    Ivory, Cornelius F.
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2019, 166 (02) : B125 - B132
  • [27] Mesoscale Electrochemical Performance Simulation of 3D Interpenetrating Lithium-Ion Battery Electrodes
    Trembacki, Bradley
    Duoss, Eric
    Oxberry, Geoffrey
    Stadermann, Michael
    Murthy, Jayathi
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2019, 166 (06) : A923 - A934
  • [28] Enhanced Electrochemical Performance of Highly Porous Supercapacitor Electrodes Based on Solution Processed Polyaniline Thin Films
    Cho, Sunghun
    Shin, Kyoung-Hwan
    Jang, Jyongsik
    ACS APPLIED MATERIALS & INTERFACES, 2013, 5 (18) : 9186 - 9193
  • [29] Robust and Elevated Adhesion and Anisotropic Friction in a Bioinspired Bridged Micropillar Array
    Shi, Zhekun
    Zhu, Bo
    Wang, Zhuo
    Xiao, Kangjian
    Wang, Yan
    Xue, Longjian
    LANGMUIR, 2023, 39 (10) : 3784 - 3791
  • [30] A Sensing Device Using Liquid Crystal in a Micropillar Array Supporting Structure
    Cheng, Daming
    Sridharamurthy, Sudheer S.
    Hunter, Jacob T.
    Park, Joon-Seo
    Abbott, Nicholas L.
    Jiang, Hongrui
    JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, 2009, 18 (05) : 973 - 982