Wilson N S, Dolan J W, Snyder L R, Carr P W, Sander L C
LC Resources, Walnut Creek, CA 94596, USA.
J Chromatogr A. 2002 Jul 5;961(2):217-36. doi: 10.1016/s0021-9673(02)00658-1.
Reversed-phase liquid chromatography (RP-LC) retention data for 23 additional solutes have been acquired to further test and evaluate a general relationship from part I: log alpha = log (k/kref) = eta'H(i) + sigma'S(ii) beta'S(iii) + alpha'B(iv) +kappa'C(v) The physico-chemical origin of terms i-v above is examined here by comparing values of (a) the solute parameters of Eq. (1) (eta', sigma', etc.) vs. solute molecular structure, and (b) the column parameters (H, S, etc.) vs. column properties (ligand length and concentration, pore diameter, end-capping). We conclude that terms i-v correspond, respectively, to hydrophobic (i), steric (ii), hydrogen bonding (iii, iv) and ionic (v) interactions between solute and stationary phase. While steric interaction (term ii) is superficially similar to what previously has been defined as "shape selectivity", the role of the solute and column in determining steric selectivity (term ii) appears more complex than previously proposed for "shape selectivity". Similarly, what has previously been called hydrogen bonding between donor solutes and an acceptor group in the stationary phase (term iv) is very likely an oversimplification.
已获取另外23种溶质的反相液相色谱(RP-LC)保留数据,以进一步测试和评估第一部分中的一个通用关系式:log α = log (k/kref) = η'H(i) + σ'S(ii) β'S(iii) + α'B(iv) + κ'C(v)。通过比较以下两方面的值,研究了上述i-v项的物理化学起源:(a) 式(1)中溶质参数(η'、σ'等)与溶质分子结构的关系,以及(b) 柱参数(H、S等)与柱性能(配体长度和浓度、孔径、封尾)的关系。我们得出结论,i-v项分别对应溶质与固定相之间的疏水作用(i)、空间作用(ii)、氢键作用(iii、iv)和离子作用(v)。虽然空间作用(项ii)表面上类似于先前定义的“形状选择性”,但溶质和柱在决定空间选择性(项ii)方面的作用似乎比先前对“形状选择性”所提出的更为复杂。同样,先前所谓的供体溶质与固定相中的受体基团之间的氢键作用(项iv)很可能过于简化了。