Electrochemical detection on electrowetting-on-dielectric digital microfluidic chip

被引:53
|
作者
Karuwan, Chanpen [1 ]
Sukthang, Kreeta [2 ]
Wisitsoraat, Anurat [1 ]
Phokharatkul, Ditsayut [1 ]
Patthanasettakul, Viyapol [1 ]
Wechsatol, Wishsanuruk [2 ]
Tuantranont, Adisorn [1 ]
机构
[1] Natl Elect & Comp Technol Ctr, Nanoelect & MEMS Lab, Pathum Thani 12120, Thailand
[2] King Mongkuts Univ Technol, Dept Mech Engn, Bangkok 10140, Thailand
关键词
Electrowetting-on-dielectric; Digital microfluidic; Electrochemical detection; DROPLET; ACTUATION; DEVICE; MANIPULATION; WATER;
D O I
10.1016/j.talanta.2011.03.073
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
In this work, the use of three-electrode electrochemical sensing system with an electrowetting-on-dielectric (EWOD) digital microfluidic device is reported for quantitative analysis of iodide. T-junction EWOD mixer device was designed using arrays of 50-mu m spaced square electrodes for mixing buffer reagent and analyte droplets. For fabrication of EWOD chips, 5-mu m thick silver EWOD electrodes were formed on a glass substrate by means of sputtering and lift-off process. PDMS and Teflon thin films were then coated on the electrodes by spin coating to yield hydrophobic surface. An external three-electrode system consisting of Au working, Ag reference and Pt auxiliary wires were installed over EWOD electrodes at the end of T-junction mixer. In experiment, a few-microliter droplets of Tris buffer and iodide solutions were moved toward the mixing junction and transported toward electrochemical electrodes by EWOD process. A short processing time within seconds was achieved at EWOD applied voltage of 300V. The analyte droplets mixed with different concentrations were successfully analyzed by cyclic voltametry. Therefore, the combination of EWOD digital microfluidic and electrochemical sensing system has successfully been demonstrated for rapid chemical analysis with minimal reagent consumption. (C) 2011 Elsevier B.V. All rights reserved.
引用
收藏
页码:1384 / 1389
页数:6
相关论文
共 50 条
  • [21] Dielectric materials for electrowetting-on-dielectric actuation
    Liu, Hong
    Dharmatilleke, Saman
    Maurya, Devendra K.
    Tay, Andrew A. O.
    MICROSYSTEM TECHNOLOGIES-MICRO-AND NANOSYSTEMS-INFORMATION STORAGE AND PROCESSING SYSTEMS, 2010, 16 (03): : 449 - 460
  • [22] Current commercialization status of electrowetting-on-dielectric (EWOD) digital microfluidics
    Li, Jia
    Kim, Chang-Jin CJ
    LAB ON A CHIP, 2020, 20 (10) : 1705 - 1712
  • [23] Low voltage electrowetting-on-dielectric
    Moon, H
    Cho, SK
    Garrell, RL
    Kim, CJ
    JOURNAL OF APPLIED PHYSICS, 2002, 92 (07) : 4080 - 4087
  • [24] Applications of electrowetting-on-dielectric (EWOD) technology for droplet digital PCR
    Rui, Xichuan
    Song, Shuren
    Wang, Wei
    Zhou, Jia
    BIOMICROFLUIDICS, 2020, 14 (06)
  • [25] Integration of Leaky Waveguide Detection with Electrowetting on Dielectric Digital Microfluidic Devices
    Gupta, Ruchi
    Goddard, Nick
    SENSORS & THEIR APPLICATIONS XVII, 2013, 450
  • [26] Electrowetting-on-Dielectric by Wireless Powering
    Byun, Sang Hyun
    Cho, Sung Kwon
    HEAT TRANSFER ENGINEERING, 2013, 34 (2-3) : 140 - 150
  • [27] Simulation and experimental verification of driving mechanism for a microfluidic device based on electrowetting-on-dielectric
    Chen, Liguo
    Xu, Xiaowei
    He, Wenyuan
    Sun, Lining
    2013 INTERNATIONAL CONFERENCE ON MANIPULATION, MANUFACTURING AND MEASUREMENT ON THE NANOSCALE (3M-NANO), 2013, : 92 - 96
  • [28] ON-CHIP DOUBLE EMULSION DROPLET ASSEMBLY USING ELECTROWETTING-ON-DIELECTRIC AND DIELECTROPHORESIS
    Wang, W.
    Jones, T. B.
    Harding, D. R.
    FUSION SCIENCE AND TECHNOLOGY, 2011, 59 (01) : 240 - 249
  • [29] Electrowetting-on-dielectric characteristics of ZnO nanorods
    Jae-Hun Kim
    Jae-Hyoung Lee
    Ali Mirzaei
    Hyoun Woo Kim
    Boon Teoh Tan
    Ping Wu
    Sang Sub Kim
    Scientific Reports, 10
  • [30] Electrowetting-on-dielectric powered by triboelectric nanogenerator
    Wang, Chao
    Li, Xiangming
    Qiu, Yangfan
    Wang, Liang
    Li, Congming
    Liu, Guifang
    Liu, Gangqiang
    Zheng, Qinwen
    Chen, Xiaoliang
    Tian, Hongmiao
    Wang, Chunhui
    Shao, Jinyou
    Nano Energy, 2022, 98