Title of article :
The effects of chain length, embedded polar groups, pressure, and pore shape on structure and retention in reversed-phase liquid chromatography: Molecular-level insights from Monte Carlo simulations
Author/Authors :
Rafferty، نويسنده , , Jake L. and Siepmann، نويسنده , , J.Ilja and Schure، نويسنده , , Mark.R.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Abstract :
Particle-based simulations using the configurational-bias and Gibbs ensemble Monte Carlo techniques are carried out to probe the effects of various chromatographic parameters on bonded-phase chain conformation, solvent penetration, and retention in reversed-phase liquid chromatography (RPLC). Specifically, we investigate the effects due to the length of the bonded-phase chains (C18, C8, and C1), the inclusion of embedded polar groups (amide and ether) near the base of the bonded-phase chains, the column pressure (1, 400, and 1000 atm), and the pore shape (planar slit pore versus cylindrical pore with a 60 Å diameter). These simulations utilize a bonded-phase coverage of 2.9 μ mol/m2and a mobile phase containing methanol at a molfraction of 33% (about 50% by volume). The simulations show that chain length, embedded polar groups, and pore shape significantly alter structural and retentive properties of the model RPLC system, whereas the column pressure has a relatively small effect. The simulation results are extensively compared to retention measurements. A molecular view of the RPLC retention mechanism emerges that is more complex than can be inferred from thermodynamic measurements.
Keywords :
Pore shape , Reversed-phase liquid chromatography , Stationary-phase structure , Retention mechanism , Chain length , Embedded polar groups , Pressure
Journal title :
Journal of Chromatography A
Journal title :
Journal of Chromatography A