Title of article :
Comparison of the adsorption mechanisms of pyridine in hydrophilic interaction chromatography and in reversed-phase aqueous liquid chromatography
Author/Authors :
Gritti، نويسنده , , Fabrice and dos Santos Pereira، نويسنده , , Alberto and Sandra، نويسنده , , Pat and Guiochon، نويسنده , , Georges، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
9
From page :
8496
To page :
8504
Abstract :
The adsorption isotherms of pyridine were measured by frontal analysis (FA) on a column packed with shell particles of neat porous silica (Halo), using water–acetonitrile mixtures as the mobile phase at 295 K. The isotherm data were measured for pyridine concentrations covering a dynamic range of four millions. The degree of heterogeneity of the surface was characterized by the adsorption energy distribution (AED) function calculated from the raw adsorption data, using the expectation-maximization (EM) procedure. The results showed that two different retention mechanisms dominate in Per aqueous liquid chromatography (PALC) at low acetonitrile concentrations and in hydrophilic interaction chromatography (HILIC) at high acetonitrile concentrations. In the PALC mode, the adsorption mechanism of pyridine on the silica surface is controlled by hydrophobic interactions that take place on very few and ultra-active adsorption sites, which might be pores on the irregular and rugose surface of the porous silica particles. The surface is seriously heterogeneous, with up to five distinct adsorption sites and five different energy peaks on the AED of the packing material. In contrast, in the HILIC mode, the adsorption behavior is quasi-homogeneous and pyridine retention is governed by its adsorption onto free silanol groups. For intermediate mobile phase compositions, the siloxane and the silanol groups are both significantly saturated with acetonitrile and water, respectively, causing a minimum of the retention factor of pyridine on the Halo column.
Keywords :
hydrophobic interactions , Hydrophilic interaction , adsorption mechanism , Minor disturbance method , Total adsorption isotherm , Adsorption energy distribution , REF , Per aqueous liquid chromatography (PALC) , pyridine , Excess adsorption isotherm , Frontal analysis , HILIC
Journal title :
Journal of Chromatography A
Serial Year :
2009
Journal title :
Journal of Chromatography A
Record number :
1512576
Link To Document :
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