22
Views
0
CrossRef citations to date
0
Altmetric
Original Articles

Microcolumn Electrophoresis for Electrokinetic Flow Analysis

, &
Pages 430-438 | Received 03 Mar 2009, Accepted 03 Mar 2009, Published online: 01 Dec 2009

REFERENCES

  • Jorgenson , J. W. ; Lukacs , K. D. Zone electrophoresis in open-tubular glass capillaries . Anal. Chem. 1981 , 53 , 1298 – 1302 .
  • Knox , J. H. ; Grant , I. W. Miniaturisation in pressure and electroendosmotically driven liquid chromatography: Some theoretical considerations . Chromatographia 1987 , 24 , 135 – 143 .
  • Rush , R. S. ; Cohen , A. S. ; Karger , B. L. Influence of column temperature on the electrophoretic behavior of myoglobin and a-lactalbumin in high-performance capillary electrophoresis . Anal. Chem. 1991 , 63 , 1346 – 1350 .
  • Knox , J. H. ; McCormack , K. A. Temperature effects in capillary electrophoresis. 1: Internal capillary temperature and effect upon performance. Chromatographia 1994, 38, 207–214.
  • Xuan , X. C. Joule heating in electrokinetic flow . Electrophoresis 2008 , 298 , 33 – 43 .
  • Cetin , B. ; Li , D. Q. Effect of Joule heating on electrokinetic transport . Electrophoresis 2008 , 29 , 994 – 1005 .
  • Maynes , D. ; Webb , B. W. The effect of viscous dissipation in thermally fully-developed electro-osmotic heat transfer in microchannels . Int. J. Heat Mass Transfer 2004 , 47 , 987 – 999 .
  • Horiuchi , K. ; Dutta , P. Joule heating effects in electroosmotically driven microchannel flows . Int. J. Heat Mass Transfer 2004 , 47 , 3085 – 3095 .
  • Tang , G. Y. ; Yan , D. G. ; Yang , C. ; Gong , H. Q. ; Chai , J. C. ; Lam , Y. C. Assessment of Joule heating and its effects on electroosmotic flow and electrophoretic transport of solutes in microfluidic channels . Electrophoresis 2006 , 27 , 628 – 639 .
  • Chein , R. ; Yang , Y. C. ; Lin , Y. S. Estimation of Joule heating effect on temperature and pressure distribution in electrokinetic-driven microchannel flows . Electrophoresis 2006 , 27 , 640 – 649 .
  • He , Y. Z. ; Wang , X. K. ; Deng , N. ; Wang , L. ; Han , F. Electrokinetic Flow Total Analysis System . Chinese Patent 2008 , ZL 200510038677.5.
  • He , Y. Z. ; Gan , W. E. ; Zhang , M. ; Zheng , M. Z. Determination of fluoride in tap water with electroosmosis pump flow injection-spectrophotometry . Chin. J. Anal. Chem. 1998 , 26 ( 2 ), 125 – 128 .
  • Gan , W. E. ; Yang , L. ; He , Y. Z. ; Zeng , R. H. ; Cervera , M. L. ; de la Guardia , M. Mechanism of porous core electroosmotic pump flow injection system and its application to determination of chromium (VI) in waste-water . Talanta 2000 , 51 ( 4 ), 667 – 675 .
  • Han , F. ; He , Y. Z. ; Li , L. ; Fu , G. N. ; Xie , H. Y. ; Gan , W. E. Determination of benzoic acid and sorbic acid in food products using electrokinetic flow analysis–ion pair solid phase extraction–capillary zone electrophoresis . Anal. Chim. Acta 2008 , 618 , 79 – 85 .
  • Deng , N. ; He , Y. Z. ; Wang , L. ; Wang , X. K. ; Su , Q. D. Reversed-phase electrochromatography with a monolithic microcolumn prepared in a 2.2-mm-inner diameter fused-silica tube . Anal. Chem. 2005 , 77 ( 17 ), 5622 – 5627 .
  • Wang , L. ; He , Y. Z. ; Deng , N. ; Wang , X. K. ; Fu , G. N. Reversed-phase liquid chromatography with electrokinetic flow analysis system . Instrum. Sci. Technol. 2006 , 34 , 743 – 753 .
  • de la Guardia , M. ; Ruzicka , J. Towards environmentally conscientious analytical chemistry through miniaturization, containment and reagent replacement . Analyst 1995 , 120 , 17N .
  • Ruzicka , J. ; Marshall , G. D. Sequential injection: A new concept for chemical sensors, process analysis and laboratory assays . Anal. Chem. Acta 1990 , 237 , 329 – 343 .
  • Reis , B. F. ; Gine , M. F. ; Zagatto , E. A. G. ; Lima , J. L. F. C. ; Lapa , R. A. Multicommutation in flow analysis. Part 1. Binary sampling: concepts, instrumentation and spectrophotometric determination of iron in plant digests . Anal. Chem. Acta 1994 , 293 ( 1–2 ), 129 – 138 .
  • Reis , B. F. ; Morales-Rubio , A. ; de la Guardia , M. Environmentally friendly analytical chemistry through automation: Comparative study of strategies for carbaryl determination with p-aminophenol . Anal. Chim. Acta 1999 , 392 ( 2–3 ), 265 – 272 .
  • Yanagisawa , K. ; Zhu , Y. ; Onda , A. ; Kajiyoshi , K. Hydrothermal synthesis of mono-dispersed quartz powders . J. Mater. Sci. 2004 , 39 , 2931 – 2934 .
  • Grushka , E. ; McCormick , R. M. ; Kirkland , J. J. Effect of temperature gradients on the efficiency of capillary zone electrophoresis separations . Anal. Chem. 1989 , 61 , 241 – 246 .
  • Masliyah , J. H. Electrokinetic Transport Phenomena ; Alberta Department of Energy. Press : Edmonton , 1994 .
  • Gobie , W. A. ; Ivory , C. F. Thermal model of capillary electrophoresis and a method for counteracting thermal band broadening . J. Chromatogr. 1990 , 516 , 191 – 210 .
  • Rathore , A. S. ; Horváth , Cs. Axial nonuniformities and flow in columns for capillary electrochromatography . Anal. Chem. 1998 , 70 , 3069 – 3077 .
  • Knox , J. H. Thermal effects and band spreading in capillary electro-separation . Chromatographia 1988 , 26 , 329 – 337 .
  • Thongkhao-On , K. ; Kottegoda , S. ; Pulido , J. S. ; Shippy , S. A. Determination of amino acids in rat vitreous perfusates by capillary electrophoresis . Electrophoresis 2004 , 25 , 2978 – 2984 .
  • Soga , T. ; Kakazu , Y. ; Robert , M. ; Tomita , M. ; Nishioka , T. Qualitative and quantitative analysis of amino acids by capillary electrophoresis-electrospray ionization-tandem mass spectrometry . Electrophoresis 2004 , 25 , 1964 – 1972 .
  • Komarova , N. V. ; Kamentsev , J. S. ; Solomonova , A. P. ; Anufrieva , R. M. Determination of amino acids in fodders and raw materials using capillary zone electrophoresis . J. Chromatogr. B 2004 , 800 , 135 – 143 .
  • Gómez-Alonso , S. ; Hermosín-Gutiérrez , I. ; García-Romero , E. Simultaneous HPLC analysis of biogenic amines, amino acids, and ammonium ion as aminoenone derivatives in wine and beer samples . J. Agric. Food Chem. 2007 , 55 , 608 – 613 .
  • Bosch , L. ; Alegría , A. ; Farré , R. Application of the 6-aminoquinolyl-N-hydroxysccinimidyl carbamate (AQC) reagent to the RP-HPLC determination of amino acids in infant foods . J. Chromatogr. B 2006 , 831 , 176 – 183 .
  • An invited paper submitted to a special issue on Green Spectroscopy and Analytical Techniques, organized by Professor Miguel de la Guardia, of the Department of Chemistry, University of Valencia, Spain, and Professor Arabinda Kumar Das, of the Department of Chemistry, University of Burdwan, West Bengal, India.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.