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Electrokinetic chromatography

N. Tanaka, T. Fukutome, K. Hosoya, K. Kimata and T. Anaki, Polymer-supported pseudo-stationary phase for electrokinetic chromatography. Electrokinetic chromatography in a full range of methanol-water mixtures with alkylated starburst dendrimers, J. Chromatogr. A, 716, 57-67, 1995. [Pg.970]

Micellar Electrokinetic Capillary Chromatography One limitation to CZE is its inability to separate neutral species. Micellar electrokinetic chromatography... [Pg.606]

The elution order for neutral species in MEKC depends on the extent to which they partition into the micelles. Hydrophilic neutrals are insoluble in the micelle s hydrophobic inner environment and elute as a single band as they would in CZE. Neutral solutes that are extremely hydrophobic are completely soluble in the micelle, eluting with the micelles as a single band. Those neutral species that exist in a partition equilibrium between the buffer solution and the micelles elute between the completely hydrophilic and completely hydrophobic neutrals. Those neutral species favoring the buffer solution elute before those favoring the micelles. Micellar electrokinetic chromatography has been used to separate a wide variety of samples, including mixtures of pharmaceutical compounds, vitamins, and explosives. [Pg.606]

Kovat s retention index (p. 575) liquid-solid adsorption chromatography (p. 590) longitudinal diffusion (p. 560) loop injector (p. 584) mass spectrum (p. 571) mass transfer (p. 561) micellar electrokinetic capillary chromatography (p. 606) micelle (p. 606) mobile phase (p. 546) normal-phase chromatography (p. 580) on-column injection (p. 568) open tubular column (p. 564) packed column (p. 564) peak capacity (p. 554)... [Pg.609]

The last set of experiments provides examples of the application of capillary electrophoresis. These experiments encompass a variety of different types of samples and include examples of capillary zone electrophoresis and micellar electrokinetic chromatography. [Pg.614]

Vogt, C. Conradi, S. Rhode, E. Determination of Caffeine and Other Purine Compounds in Pood and Pharmaceuticals by Micellar Electrokinetic Chromatography, /. Chem. Educ. 1997, 74, 1126-1130. [Pg.614]

ON-LINE CONCENTRATION TECHNIQUES IN MICELLE ELECTROKINETIC CHROMATOGRAPHY (MEKC)... [Pg.250]

S. Terabe, Electrokinetic cliromatography an interface between electrophoresis and chromatography . Trends Anal. Chem. 8 129-134 (1989). [Pg.150]

The effects of pH on electrokinetic velocities in micellar electrokinetic chromatography was studied by using sodium dodecyl sulfate solutions [179]. Micellar electrokinetic capillary chromatography with a sodium dodecyl sulfate pseudostationary phase has been used to determine the partition constants for nitrophenols, thiazolylazo dyes, and metal chelate compounds [180]. A similar technique was used to separate hydroquinone and some of its ether derivatives. This analysis is suitable for the determination of hydroquinone in skin-toning creams [181]. The ingredients of antipyretic analgesic preparations have also been determined by this technique [182], The addition of sodium dodecyl sulfate improves the peak shapes and resolution in chiral separations by micellar electrokinetic chromatography [183]. [Pg.274]

WORTH c c, wiESSLER M and SCHMITZ o J (2000) Analysis of catechins and caffeine in tea extracts by micellar electrokinetic chromatography . Electrophoresis, 21 (17), 3634-... [Pg.158]

CE was recently used for anthocyanin analysis because of its excellent resolution. This technique has different modes capillary zone electrophoresis (CZE), capillary gel electrophoresis (CGE), micellar electrokinetic chromatography (MEKC), capillary electrochromatography (CEC), capillary isoelectric focusing (CIEE), and capillary isotachophoresis (CITP)."° CZE is the most popular method for anthocyanin... [Pg.489]

Capillary electrophoresis is increasingly used in food analysis due to its separation performance combined with the short time of analysis. - CapiUary electrophoresis recently applied to colorant measurements includes technical variants such as capillary zone electrophoresis (CZE) and micellar electrokinetic chromatography. ... [Pg.523]

Watanabe, T. et al.. Analysis of elderberry pigments in commercial food samples by micellar electrokinetic chromatography. Anal. Sci., 14, 839, 1998. [Pg.527]

Recently a new method was developed for the complete liquid chromatographic separation and diode array detection of standard mixtures of the 14 most frequently used synthetic colorants. Protocols for RP-HPLC - " and IP-HPLC techniques have been extensively described and the techniques were compared with micellar electrokinetic capillary chromatography, - which has been shown to be suitable for the analysis of synthetic colorants. [Pg.542]

Chou, S.S. et al., Determination of synthetic colors in soft drinks and confectioneries by micellar electrokinetic capillary chromatography, J Food ScL, 67, 1314, 2002. [Pg.545]

Thompson, C.O. and Trenerry, V.C., Determination of synthetic colours in confectionery by micellar electrokinetic capillary chromatography, J. Chromatogr. A, 704, 195, 1995. [Pg.546]

Huang, H.Y, Determination of food colorants by microemulsion electrokinetic chromatography, Electrophoresis, 26, 867, 2005. [Pg.546]

Hilder, E.F. et al.. Separation of hydrophobic polymer additives by microemulsion electrokinetic chromatography, J. Chromatogr A, 922, 293, 2001. [Pg.546]

Klampfl, C.W., Solvent effects in microemulsion electrokinetic chromatography. Electrophoresis, 24, 1537, 2003. [Pg.546]

Trone, M. D., Leonard, M. S., Khaledi, M. G. Congeneric behavior in estimations of octanol-water partition coefficients by micellar electrokinetic chromatography. Anal. Chem. 2000, 72, 1228-1235. [Pg.49]

LEKC/VEKC Hposome/vesicular electrokinetic chromatography LSER Hnear solvation energy relationship... [Pg.331]


See other pages where Electrokinetic chromatography is mentioned: [Pg.606]    [Pg.609]    [Pg.610]    [Pg.775]    [Pg.265]    [Pg.266]    [Pg.266]    [Pg.279]    [Pg.299]    [Pg.144]    [Pg.147]    [Pg.85]    [Pg.463]    [Pg.533]    [Pg.542]    [Pg.543]    [Pg.543]    [Pg.546]    [Pg.25]    [Pg.39]    [Pg.331]    [Pg.331]   
See also in sourсe #XX -- [ Pg.279 ]




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Capillary Electrophoresis and Micellar Electrokinetic Chromatography

Capillary electrokinetic chromatography

Capillary electrophoresis micellar electrokinetic chromatography

Cephalosporins micellar electrokinetic chromatography

Chromatography micellar electrokinetic chromatograph

Chromatography, liquid micellar electrokinetic capillary

Chromatography, micellar electrokinetic capillary MEKC)

Electrochromatography micellar electrokinetic chromatography

Electrokinetic

Electrokinetic chromatography electrophoretic mobility

Electrokinetic chromatography neutral analyte

Electrokinetic chromatography pseudostationary phase

Electrokinetic chromatography retention factor

Electrokinetic chromatography separations

Electrokinetic chromatography, synthetic food

Electrokinetics)

Electroosmotic flow electrokinetic chromatography

Flavonoids, micellar electrokinetic chromatography

Ionic strength, micellar electrokinetic chromatography

Liquid chromatography micellar electrokinetic chromatograph

Micellar Electrokinetic Chromatography (MECK)

Micellar electrokinetic capillary chromatography

Micellar electrokinetic capillary chromatography MECC)

Micellar electrokinetic capillary chromatography MECC/MEKC)

Micellar electrokinetic capillary chromatography amino acid analysis

Micellar electrokinetic chromatography

Micellar electrokinetic chromatography , generally

Micellar electrokinetic chromatography MECC)

Micellar electrokinetic chromatography MEKC)

Micellar electrokinetic chromatography applications

Micellar electrokinetic chromatography capacity factor

Micellar electrokinetic chromatography capillary zone electrophoresis with

Micellar electrokinetic chromatography critical micelle concentration

Micellar electrokinetic chromatography detergents

Micellar electrokinetic chromatography development

Micellar electrokinetic chromatography environmental applications

Micellar electrokinetic chromatography instrumentation

Micellar electrokinetic chromatography micelle

Micellar electrokinetic chromatography modifications

Micellar electrokinetic chromatography modifiers

Micellar electrokinetic chromatography operating conditions

Micellar electrokinetic chromatography pharmaceutical compounds

Micellar electrokinetic chromatography principles

Micellar electrokinetic chromatography resolution

Micellar electrokinetic chromatography separation

Micellar electrokinetic chromatography separation conditions

Micellar electrokinetic chromatography surfactant

Micellar electrokinetic chromatography surfactants used

Micellar electrokinetic chromatography technique using

Micellar electrokinetic chromatography theory

Micellar electrokinetic chromatography using

Micellar electrokinetic chromatography with MEKC

Micellar, aggregates electrokinetic chromatography

Micelle electrokinetic capillary chromatography

Miceller electrokinetic chromatography

Microemulsion electrokinetic chromatography

Microemulsion electrokinetic chromatography MEEKC)

Multiplexed microemulsion electrokinetic chromatography

Nanomicellar electrokinetic chromatography

Pharmaceutical analysis micellar electrokinetic chromatography

Pharmaceutical analysis microemulsion electrokinetic chromatography

Phenols micellar electrokinetic chromatography

Polymeric surfactant electrokinetic chromatography

Retention times, micellar electrokinetic chromatography

Separation techniques micellar electrokinetic chromatography

Vesicle electrokinetic chromatography,

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