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Paper symposium - Nonaqueous capillary electrophoresis Riekkola ML |
367 - 374 |
Capillary electrophoresis of anionic analytes in methanol: Effect of counter-ions on electrophoretic mobility Porras SP, Riekkola ML, Kenndler E |
375 - 382 |
Electrophoretic mobilities of large organic ions in nonaqueous solvents: Determination by capillary electrophoresis in propylene carbonate, N,N-dimethylformamide, N,N,-dimethylacetamide, acetonitrile and methanol Muzikar J, van de Goor T, Gas B, Kenndler E |
383 - 392 |
Dielectric friction as a mechanism for selectivity alteration in capillary electrophoresis using acetonitrile-water media Roy KI, Lucy CA |
393 - 399 |
Nonaqueous capillary electrophoresis with alcoholic background electrolytes: Separation efficiency under high electrical field strengths Palonen S, Jussila M, Porras SP, Hyotylainen T, Riekkola ML |
400 - 407 |
Special aspects of detection methodology in nonaqueous capillary electrophoresis Matysik FM |
408 - 413 |
Field-amplified sample stacking and nonaqueous capillary electrophoresis determination of complex mixtures of polar aromatic sulfonates Morales S, Cela R |
414 - 420 |
Comparison of aqueous and nonaqueous carrier electrolytes for the separation of penicillin V and related substances by capillary electrophoresis with UV and mass spectrometric detection Hilder EF, Klampfl CW, Buchberger W, Haddad PR |
421 - 425 |
Comparison of three different anionic surfactants for the separation of hydrophobic compounds by nonaqueous capillary electrophoresis Lin JM, Nakagawa M, Uchiyama K, Hobo T |
426 - 430 |
Ionic liquids as electrolytes for nonaqueous capillary electrophoresis Vaher M, Koel M, Kaljurand M |
431 - 436 |
Nonaqueous affinity capillary electrophoresis investigation of small molecule molecular recognition Peddicord MB, Weber SG |
437 - 441 |
Interface for coupling nonaqueous wide-bore capillary electrophoresis with mass spectrometry Varjo SJO, Jussila M, Palonen S, Riekkola ML |
442 - 448 |
Nonaqueous capillary electrophoresis-electrospray-mass spectrometry for the analysis of fluoxetine and its related compounds Cherkaoui S, Veuthey JL |
449 - 455 |
Indirect fluorescence of aliphatic carboxylic acids in nonaqueous capillary electrophoresis using merocyanine 540 Chiu TC, Huang MF, Huang CC, Hsieh MM, Chang HT |
456 - 461 |
Nonaqueous capillary electrophoretic separation of basic enantiomers using octakis(2,3-O-dimethyl-6-O-sulfo)-gamma-cyclodextrin, a new, single-isomer chiral resolving agent Busby MB, Maldonado O, Vigh G |
462 - 476 |
Low-molecular-weight chiral cation exchangers: Novel chiral stationary phases and their application for enantioseparation of chiral bases by nonaqueous capillary electrochromatography Tobler E, Lammerhofer M, Wuggenig F, Hammerschmidt F, Lindner W |
477 - 485 |
Use of vancomycin silica stationary phase in packed capillary electrochromatography: III. Enantiomeric separation of basic compounds with the polar organic mobile phase Fanali S, Catarcini P, Quaglia MG |
486 - 493 |
Enantioseparations in nonaqueous capillary liquid chromatography and capillary electro-chromatography using cellulose tris(3,5-dimethyl-phenylcarbamate) as chiral stationary phase Chankvetadze L, Kartozia I, Yamamoto C, Chankvetadze B, Blaschke G, Okamoto Y |
494 - 501 |
Comparative study of separation and determination of triazines by micellar electrokinetic capillary chromatography and nonaqueous capillary electrophoresis: Application to residue analysis in natural waters Carabias-Martinez R, Rodriguez-Gonzalo E, Dominguez-Alvarez J, Hernandez-Mendez J |
502 - 505 |
Determination of tamoxifen and metabolites in mouse fetal tissue using nonaqueous capillary electrophoresis Sanders JM, Cunningham ML |
506 - 511 |
Using nonaqueous capillary electrophoresis to analyze several quinolones in pig kidney samples Hernandez M, Borrull F, Calull M |