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Journal of Colloid and Interface Science|September 14, 2000
Film Mass Transfer Coefficient Expressions for Electroosmotic FlowsLiapis, GrimesJournal of Colloid and Interface Science|June 14, 2003
Expressions for evaluating the possibility of slip at the liquid-solid interface in open tube capillary electrochromatographyB A Grimes, A I LiapisJournal of Colloid and Interface Science|November 18, 2005
The interplay of diffusional and electrophoretic transport mechanisms of charged solutes in the liquid film surrounding charged nonporous adsorbent particles employed in finite bath adsorption systemsB A Grimes, A I LiapisJournal of Chromatography. A|June 14, 2000
Modeling the velocity field of the electroosmotic flow in charged capillaries and in capillary columns packed with charged particles: interstitial and intraparticle velocities in capillary electrochromatography systemsA I Liapis, B A GrimesJournal of Chromatography. A|July 19, 2001
Quantitative analysis and synthesis of the electrokinetic mass transport and adsorption mechanisms of a charged adsorbate in capillary electrochromatography systems employing charged adsorbent particlesB A Grimes, A I LiapisJournal of Colloid and Interface Science|February 13, 2001
Modeling and Analysis of the Electrokinetic Mass Transport and Adsorption Mechanisms of a Charged Adsorbate in Capillary Electrochromatography Systems Employing Charged Nonporous Adsorbent ParticlesB. A. Grimes, A. I. LiapisJournal of Separation Science|April 28, 2007
The effect of the pore structure and zeta potential of porous polymer monoliths on separation performance in ion-exchange modeAthanasios I Liapis, Brian A GrimesJournal of Chromatography. A|July 27, 2001
Modeling and analysis of the dynamic behavior of mechanisms that result in the development of inner radial humps in the concentration of a single adsorbate in the adsorbed phase of porous adsorbent particles observed in confocal scanning laser microscopy experiments: diffusional mass transfer and adsorption in the presence of an electrical double layerA I Liapis, Grimes, K Lacki, et al.Journal of Chromatography. A|September 8, 2000
Determination of the intraparticle electroosmotic volumetric flow-rate, velocity and Peclet number in capillary electrochromatography from pore network theoryB A Grimes, J J Meyers, A I LiapisJournal of Chromatography. A|December 25, 2002
Novel general expressions that describe the behavior of the height equivalent of a theoretical plate in chromatographic systems involving electrically-driven and pressure-driven flowsB A Grimes, S Lüdtke, K K Unger, et al.Pageof 500