• DocumentCode
    2067431
  • Title

    Capillary electrophoresis electrochemical (CE-EC) detection on a novel thread-based microfluidic device with 3D sensing electrodes

  • Author

    Yi-Chi Wei ; Che-Hsin Lin ; Yao-Nan Wang ; Lung-Ming Fu

  • Author_Institution
    Dept. of Mech. & Electromech. Eng., Nat. Sun Yat-sen Univ., Kaohsiung, Taiwan
  • fYear
    2012
  • fDate
    4-7 Nov. 2012
  • Firstpage
    101
  • Lastpage
    105
  • Abstract
    Capillary electrophoresis (CE) has been used in a number of bio-analytical detection in the past decays. This detection scheme has high separation efficiency and rapid detection capability. Fluorescence detection is the most common adopted method in capillary electrophoresis system. However, fluorescence detection approach relies on fluorescence labeling and delicate optical excitation and detection components. Alternatively, electrochemical detection can rapid detect the electrical changes caused by the passing samples. The combination of capillary electrophoresis separation and electrochemical detection (CEEC) has been used in a variety of application. CEEC detection was usually carried out using the amperometric detection method. However, typical CE chips are with closed-channel design which needs a number of microfabrication process including micro-channel forming and chip bonding to form the sealed microfluidic channel. Therefore, the fabrication process for producing typical CE chip is comparable time-consuming and expensive. Consequently, to use polymers as substrates for microchip fabrication is faster and cheaper way than glass device and can be fabricated without accessing the clean-room facilities. One major problem for using the microfluidic chips with physical channels is that these chips may suffer from pollutions or clogging while repeating using these chips. Due to the difficulty for cleaning sealed microfluidic channels. Disposing the chip can simple solve this problem but the cost is another issue. Therefore, it is beneficial to develop microfluidic systems without using physical sealed channels, or so-called non-channel based microfluidic systems.
  • Keywords
    bioMEMS; biological techniques; electrochemical electrodes; electrochemical sensors; electrophoresis; lab-on-a-chip; microfabrication; microfluidics; microsensors; polymers; 3D sensing electrodes; CE chip bonding; CE-EC detection; CEEC detection; amperometric detection method; bioanalytical detection; capillary electrophoresis electrochemical detection; capillary electrophoresis separation; glass device; microchip fabrication; microfabrication process; microfluidic channel; microfluidic device; nonchannel based microfluidic systems; optical excitation; polymers; substrates;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nano/Molecular Medicine and Engineering (NANOMED), 2012 IEEE 6th International Conference on
  • Conference_Location
    Bangkok
  • ISSN
    2159-6964
  • Print_ISBN
    978-1-4673-5101-0
  • Type

    conf

  • DOI
    10.1109/NANOMED.2012.6509129
  • Filename
    6509129