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基于液芯波导原理的微流控芯片长光程光度检测系统 被引量:4

A Microfluidic Chip for Absorbance Measurements with Long Optical Path-length Based on a Liquid-core Waveguide Technique
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摘要 提出了一种基于液芯波导 ( Liquid core waveguide,LCW)原理的微流控芯片吸收光度检测系统 .通过芯片与外界接口技术实现液芯波导管与芯片的耦合 ,建立了芯片上长光程 (毫米至厘米级 )吸收光度检测池 .采用邻菲啉 -铁 ( )显色体系验证系统分析性能 ,以 5 .5 cm外覆 Teflon AF液芯波导管作为检测池 (检测池体积 2 40 n L)时 ,芯片系统的检测线性范围为 0 .0 3~ 5 0μmol/L,对邻菲啉 -铁 ( )配合物的检出限为8nmol/L,检测池有效光程达 1 .7cm,分析精度 RSD( n=5 )为 0 .8% . In this work, a system for high sensitivity absorbance measurements on microfluidic chips was developed with a detection volume of 240 nL. Long optical path-length(1.7 cm effective path length) was achieved on the chip by using an integrated liquid core waveguide(LCW) silica capillary coated with Teflon AF. The performance of the system was tested by using o-phenanthroline-Fe(Ⅱ) complex as a model sample with spectrophotometric detection, achieving a detection limit of 8 nmol/L for the complex. The absorbance of samples ranging from 0.03—50 μmol/L is linear(R 2=0.999 4) and showed good repeatability with a RSD of 0.8%(n=5). The sensitivity of the chip-LCW system was a factor of 1.7 higher than conventional spectrophotometry using a 1 cm cell. The present system can be applied in continous flow or flow injection analysis systems.
机构地区 浙江大学化学系
出处 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2004年第4期610-613,共4页 Chemical Journal of Chinese Universities
基金 国家自然科学基金重大项目 (批准号 :2 0 2 990 3 0 ) 教育部科学技术研究重点项目 (批准号 :0 10 93 )资助
关键词 微流控芯片 长光程光度检测系统 液芯波导 微全分析系统 邻菲啰啉-铁配合物 Microfluidic chip Liquid core waveguide Absorbance detection
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  • 1Manz A., Graber N., Widmer H. M.. Sens. Actuators B[J], 1990, B1: 244-248
  • 2Liang Z. H., Chiem N., Ocvirk G. et al.. Anal. Chem.[J], 1996, 68: 1 040-1 046
  • 3Wolk J., Spaid M., Jensen M. et al.. Micro-TAS 2001[C], Netherlands: Kluwer Academic Publishers, 2001: 367-368
  • 4Verpoorte E., Manz A., Luedi H. et al.. Sens. Actuators B[J], 1992, B6: 66-67
  • 5Takao H., Noda T., Ashiki M. et al.. Micro-TAS 2001[C], Netherlands: Kluwer Academic Publishers, 2001: 363-364
  • 6Tiggelaar R. M., Veenstra T. T., Sanders R. G. P. et al.. Talanta[J], 2002, 56: 331-339
  • 7Salimi-Moosavi H., Jiang Y. T., Lester L. et al.. Electrophoresis[J], 2000, 21: 1 291-1 299
  • 8Fuwa K., Lei W., Fujiwara K.. Anal. Chem.[J], 1984, 56: 1 640-1 644
  • 9Bings N. H., Wang C., Skinner C. D. et al.. Anal. Chem.[J], 1999, 71: 3 292-3 296
  • 10胡秋娈,李娜,赵凤林,李克安.硝基磺酚C光度法测定蛋白质的研究[J].高等学校化学学报,1999,20(2):221-223. 被引量:20

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  • 1吕艳阳,许春萱.双硫腙-乙醇体系分光光度法测锌的研究[J].信阳师范学院学报(自然科学版),2004,17(4):414-416. 被引量:8
  • 2贾宏新,王世立,徐章润,方肇伦.微流控芯片流动注射气体扩散分离光度测定系统的研究[J].高等学校化学学报,2006,27(9):1621-1625. 被引量:2
  • 3赵彩玲,高风光.分光光度法快速测定水中铬(VI)[J].化学分析计量,2006,15(5):63-64. 被引量:14
  • 4[1]Kumar A,Subrahmanyam T V B,Sharma A D,et al.Novel refractometer using a tapered optical fibre.Electron.Lett.,1984,20(13):534~535.
  • 5[2]Scheggi A M,Brenci M,Conforti G,et al.Optical fiber thermometer for medical use.IEE Proc..Part H.Microwaves,optics and antennas,1984,131(4):270~272.
  • 6[9]Wolffenbuttel R F A.State-of-the-Art in Integrated Optical Microspectrometers.IEEE Transactions on Instrumentation and Measurement,2004,53(1):197~202.
  • 7Harrison D. J. , Manz A. , Fan Z. H. et al.. Anal. Chem. [J], 1992, 64: 1 926-1 932
  • 8Jacobson S. C. , Hergenroeder R. , Koutny L. B. et al.. Anal. Chem. [J], 1994, 66: 1 107-1 113
  • 9Doku G. N., Haswell S. J.. Anal. Chim. Acta[J], 1999, 382:1-13
  • 10Leach A. M. , Wheeler A. R., Zare R. N.. Anal. Chem. [J], 2003, 75: 967-972

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