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微流控芯片检测技术进展 被引量:5

Developments in Detection Techniques for Microfluidic Devices
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摘要 对近年来用于微流控芯片的光学检测(包括荧光、吸收光度和电化学发光检测等)、电化学检测(电导检测、电位检测及安培检测)的发展和其他一些检测方法的研究成果进行了综述.随着微加工技术的不断发展,高速多通道检测以及集成多种方法的高通用性微流控检测芯片都将成为未来的研究热点. In this review, we sum up recent progress of optical detection(including fluorescence detection, absorbance detection, electrochemiluminescence detection etc), electrochemical detection(including conductimetry detection, potentiometry detection, amperometry detection)and some other detection methods for microflui- dic chips. With the rapid progress in the MEMS technology, high speed, multi-channel detection and a universal microchip integrated with many kinds of detection methods will be research focus in the future.
出处 《纳米技术与精密工程》 CAS CSCD 2005年第1期74-79,共6页 Nanotechnology and Precision Engineering
关键词 微流控芯片 电化学发光 安培 荧光 电导检测 电化学检测 电位 高通 光学检测 微加工技术 microfluidic chip fluorescence optical electrochemical detection
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  • 1[1]Manz,Graber N, Widmer H M. Miniaturized total chemical analysis systems: A novel concept for chemical sensing[J].Sens Actuators B,1990, 1:244-248.
  • 2[2]Manz, Harrison D J, Verpoorte E, et al. Planar chips technology for miniaturization of separation systems: A developing perspective in chemical monitoring [ J ]. Advance in Chromatography, 1993, 33:1-66.
  • 3[3]Ocvirk G, Tang T, Harrison D J. Optimization of confocal epifluorescence microscopy for microchip-based miniaturized total analysis systems [J]. Analyst, 1998, 123: 1429-1434.
  • 4[4]Jiang G F, Attiya S, Ocvirk G, et al. Red diode laser induced fluorescence detection with a confocal microscope on a microchip for capillary electrophoresis [ J ]. Biosens Bioelectron, 2000,14:861-869.
  • 5[5]Melanson J E, Lucy C A. Violet (405 nm) diode laser for laser induced fluorescence detection in capillary electrophoresis[J]. Analyst, 2000, 125:1049-1052.
  • 6[6]Webster J R, Bums M A, Burke D T, et al. Monolithic capillary electrophoresis device with integrated fluorescence detector[J]. Anal Chem,2001, 73:1622-1626.
  • 7[7]Chabinyc M L, Chiu D T, McDonald J C ,et al. An integrated fluorescence detection system in poly (dimethylsiloxane) for microfluidic applications [ J ]. Anal Chem, 2001 ,73:4 491-4 498.
  • 8[8]Lindner D. The μChemLab project:Micro total analysis system R&D at sandia national laboratories [J]. Lab Chip,2001,1:15N-19N.
  • 9[9]Kamei T, Paegel B M, Scherer J R,et al. Integrated hydrogenated amorphous Si photodiode detector for microfluidic bioanalytical devices [J]. Anal Chem, 2003, 75: 5300-5305.
  • 10[10]Qin J H,Fung Y S,Zhu D R ,et al. Native fluorescence detection of flavin derivatives by microchip capillary electrophoresis with laser-induced fluorescence intensified charge-coupled device detection [ J ]. J Chromatogr A,2004, 1027:223-229.

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