By K.D. Bartle, P. Meyers
This product isn't on hand individually, it's only bought as a part of a suite. There are 750 items within the set and those are all bought as one entity. content material: An creation to capillary electrochromatography / Keith D. Bartle, Maria G. Cikalo and Mark M. Robson -- The capillary electrochromatograph / Norman W. Smith -- helps and desk bound stages for capillary electrochromatography / Peter Myers -- Electroosmosis in complicated media : bulk delivery in CEC / Vincent T. Remcho and Patrick T. Vallano -- Capillary electrochromatography with open tubular columns (OTCEC) / Monika M. Dittman and Gerard P. Rozing -- Capillary electrochromatography/mass spectrometry / G.A. Lord and D.B. Gordon -- Pharmaceutical purposes of capillary electrochromatography / Melvin R. Euerby and Nicola C. Gillott -- Capillary electrochromatography in normal product examine / An Dermaux and Pat Sandra. summary: This product isn't really on hand individually, it is just bought as a part of a collection. There are 750 items within the set and those are all offered as one entity
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Additional resources for Capillary Electrochromatography (RSC Chromatography Monographs)
In bare fused silica capillaries, it has been found that EOF velocity decreases upon addition of acetonitrile to an aqueous b ~ f f e r In . ~ packed column CEC, contradictory results have been obtained in which EOF velocity was found to increase”‘ and with increasing volume per cent of organic solvent in the mobile phase. Although differences in packing materials and buffer compositions employed in these studies may partially explain the inconsistency, these results indicate the complexity of the relationship.
6 Analyte Focusing Propylsulfonic Acid Phases In our own work we have tried to investigate and understand the propylsulfonic acid phase and this has been done using molecular modelling. Using Hyperchem” molecular modelling software a solvated model of a section of the propylsulfonic acid (SCX) chromatographic surface was created. 5). Obviously, this model contained hundreds of atoms and tens of molecules and so optimization using Monte Carlo (MC) techniques would be an impossibly long process, and even using molecular modelling (MM) would be highly laborious.
A , 1995,716, 107. L. C. Peters, M. Petro, F. J. Frechet, Anal. , 1997,69, 3646. CHAPTER 4 Electroosmosis in Complex Media: Bulk Transport in CEC VINCENT T. REMCHO AND PATRICK T. VALLANO Preface Capillary electrochromatography (CEC) is a powerful separation technique that essentially combines the advantages of capillary HPLC and capillary electrophoresis (CE). As in capillary HPLC, solutes partition between the mobile and stationary phases. However, instead of a pressure gradient to pump the mobile phase, application of an electric field to the capillary induces electroosmotic flow (EOF), which is responsible for bulk transport.
Capillary Electrochromatography (RSC Chromatography Monographs) by K.D. Bartle, P. Meyers