Extended thermodynamic approach to ion interaction chromatography. A mono- and bivariate strategy to model the influence of ionic strength

被引:14
作者
Cecchi, T
Pucciarelli, F
Passamonti, P
机构
[1] ITIS Montani, I-63023 Fermo, AP, Italy
[2] Univ Camerino, Dipartimento Sci Chim, I-62032 Camerino, Italy
关键词
column liquid chromatography; ion interaction chromatography; ionic strength; ion interaction reagent concentration; thermodynamic model;
D O I
10.1002/jssc.200401901
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Recent breakthroughs in the theory of ion interaction chromatography (IIC) permit new analyses of the dependence of retention on different interdependent factors. The influence of the ionic strength / on the surface potential, the Donnan effect, and salting effects are taken into account to model the chromatographic behaviour of charged analytes in IIC. The most reliable experimental results found in the literature were used to test the retention equations that were developed following both a monovariate ( / changes as the concentration of H, ion interaction reagent, changes) and a bivariate ( / changes because of the simultaneous variation of H and of the background electrolyte concentrations) approach. The present extended thermodynamic model builds on the sound intuition of the electrostatic approach and proves to provide the most successful and exhaustive quantitative explanation of experimental evidence. It is also able to rationalise the less extensive agreement between the pure electrostatic approach predictions and experimental results. The adequacy of the model is supported by physically reliable estimates of the adjustable constant (ion-pair constants, DeltaGdegrees). Moreover statistical practice demonstrates that all the adjustable parameters (three at most) are statistically significant. A linear, zero crossing function with unit slope is obtained when k(pred) is plotted against k(exp). The mean percent error between k(pred) and k(exp) is 4.5% at most. In the absence of H the present retention equation reduces, as expected, to the relationship that describes the influence of / on the retention behaviour in reversed-phase liquid chromatography.
引用
收藏
页码:1323 / 1332
页数:10
相关论文
共 42 条
[1]   CHROMATOGRAPHIC RETENTION MECHANISM OF ORGANIC IONS ON A LOW-CAPACITY ION-EXCHANGE ADSORBENT [J].
AFRASHTEHFAR, S ;
CANTWELL, FF .
ANALYTICAL CHEMISTRY, 1982, 54 (14) :2422-2427
[2]   STUDIES IN REVERSED-PHASE ION-PAIR CHROMATOGRAPHY .3. THE EFFECT OF COUNTER ION CONCENTRATION [J].
BARTHA, A ;
BILLIET, HAH ;
DEGALAN, L ;
VIGH, G .
JOURNAL OF CHROMATOGRAPHY, 1984, 291 (MAY) :91-102
[3]   ELECTROSTATIC RETENTION MODEL OF REVERSED-PHASE ION-PAIR CHROMATOGRAPHY [J].
BARTHA, A ;
STAHLBERG, J .
JOURNAL OF CHROMATOGRAPHY A, 1994, 668 (02) :255-284
[4]   RETENTION MECHANISM FOR REVERSED-PHASE ION-PAIR LIQUID-CHROMATOGRAPHY [J].
BIDLINGMEYER, BA ;
DEMING, SN ;
PRICE, WP ;
SACHOK, B ;
PETRUSEK, M .
JOURNAL OF CHROMATOGRAPHY, 1979, 186 (DEC) :419-434
[5]   EFFECT OF IONIC-STRENGTH ON RETENTION AND DETECTOR RESPONSE IN REVERSED-PHASE ION-PAIR LIQUID-CHROMATOGRAPHY WITH ULTRAVIOLET-ABSORBING ION INTERACTION REAGENTS [J].
BIDLINGMEYER, BA ;
WARREN, FV .
ANALYTICAL CHEMISTRY, 1982, 54 (13) :2351-2356
[6]   INFLUENCE OF ADDITIVES TO THE ELUENT OF THE HYDROPHOBIC INTERACTION CHROMATOGRAPHY OF SIMPLE COMPOUNDS .4. INFLUENCE OF ELECTROLYTES ON THE RETENTION OF NORMAL ALKANOLS AT 25-DEGREES-C [J].
BRANDTS, PM ;
GELSEMA, WJ ;
DELIGNY, CL .
JOURNAL OF CHROMATOGRAPHY, 1988, 437 (02) :337-350
[7]   MECHANISM OF CHROMATOGRAPHIC RETENTION OF ORGANIC IONS ON A NON-IONIC ADSORBENT [J].
CANTWELL, FF ;
PUON, S .
ANALYTICAL CHEMISTRY, 1979, 51 (06) :623-632
[8]   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
[10]   Extended thermodynamic approach to ion interaction chromatography [J].
Cecchi, T ;
Pucciarelli, F ;
Passamonti, P .
ANALYTICAL CHEMISTRY, 2001, 73 (11) :2632-2639