Use of lipophilic ion adsorption isotherms to determine the surface area and the monolayer capacity of a chromatographic packing, as well as the thermodynamic equilibrium constant for its adsorption

被引:13
作者
Cecchi, T [1 ]
机构
[1] ITIS Montani, I-63023 Fermo, AP, Italy
关键词
LC; adsorption isotherms; surface potential; chromatographically accessible area; thermodynamic equilibrium constant; monolayer capacity;
D O I
10.1016/j.chroma.2005.03.022
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A method that champions the approaches of two independent research groups, to quantitate the chromatographic stationary phase surface available for lipophilic ion adsorption, is presented. For the first time the non-approximated expression of the electrostatically modified Langmuir adsorption isotherm was used. The non approximated Gouy-Chapman (G-C) theory equation was used to give the rigorous surface potential. The method helps model makers, interested in ionic interactions, determine whether the potential modified Langmuir isotherm can be linearized, and, accordingly, whether simplified retention equations can be properly used. The theory cultivated here allows the estimates not only of the chromatographically accessible surface area, but also of the thermodynamic equilibrium constant for the adsorption of the amphiphile, the standard free energy of its adsorption, and the monolayer capacity of the packing. In addition, it establishes the limit between a theoretical and an empirical use of the Freundlich isotherm to determine the surface area. Estimates of the parameters characterising the chromatographic system are reliable from the physical point of view, and this greatly validates the present comprehensive approach. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:201 / 206
页数:6
相关论文
共 22 条
[1]   STUDIES IN REVERSED-PHASE ION-PAIR CHROMATOGRAPHY .4. THE ROLE OF THE CHAIN-LENGTH OF THE PAIRING ION [J].
BARTHA, A ;
VIGH, G ;
BILLIET, HAH ;
DEGALAN, L .
JOURNAL OF CHROMATOGRAPHY, 1984, 303 (01) :29-38
[2]   ELECTROSTATIC RETENTION MODEL OF REVERSED-PHASE ION-PAIR CHROMATOGRAPHY [J].
BARTHA, A ;
STAHLBERG, J .
JOURNAL OF CHROMATOGRAPHY A, 1994, 668 (02) :255-284
[3]   MECHANISM OF CHROMATOGRAPHIC RETENTION OF ORGANIC IONS ON A NON-IONIC ADSORBENT [J].
CANTWELL, FF ;
PUON, S .
ANALYTICAL CHEMISTRY, 1979, 51 (06) :623-632
[4]   Ion-interaction chromatography of zwitterions. The fractional charge approach to model the influence of the mobile phase concentration of the ion-interaction reagent [J].
Cecchi, T ;
Pucciarelli, F ;
Passamonti, P .
ANALYST, 2004, 129 (11) :1037-1046
[5]   Extended thermodynamic approach to ion interaction chromatography: Influence of organic modifier concentration [J].
Cecchi, T ;
Pucciarelli, F ;
Passamonti, P .
CHROMATOGRAPHIA, 2003, 58 (7-8) :411-419
[7]   Extended thermodynamic approach to ion interaction chromatography [J].
Cecchi, T ;
Pucciarelli, F ;
Passamonti, P .
ANALYTICAL CHEMISTRY, 2001, 73 (11) :2632-2639
[8]  
CECCHI T, DEKKER ENCY CHROMATO
[9]  
DAVIESJT, 1961, INTERFACIAL PHENOMEN, pCH4
[10]   STUDY ON THE RETENTION OF AMINES IN REVERSED-PHASE ION-PAIR CHROMATOGRAPHY ON BONDED PHASES [J].
DEELDER, RS ;
VANDENBERG, JHM .
JOURNAL OF CHROMATOGRAPHY, 1981, 218 (1-3) :327-339