Melander W R, Chen B K, Horváth C
J Chromatogr. 1985 Jan 4;318(1):1-10. doi: 10.1016/s0021-9673(01)90659-4.
The relationship between logarithmic retention factor, kappa, in reversed-phase chromatography and operating conditions including mobile phase composition and column temperature is still controversial. Earlier, the following analytical relationship was proposed for use with alkyl benzenes: kappa = A1 phi (1 - Tc/T) + A2/T + A3 where phi is volume fraction organic co-solvent of the hydro-organic mobile phase, T is absolute temperature and A1-A3 are parameters appropriate to the eluite and stationary phase. Insofar as its use had not been tested with polar eluites that are retained by only one mechanism, its description of the retention of 54 polar and apolar eluites was examined and compared to equations with other, usually more complex, relationships between retention and operating conditions. The following four-parameter equation described best most data: kappa = A1 phi (1 - Tc/T) + A2/T + A3 + A4 phi. But neither this nor any other four-parameter equation under examination here emerged solely as the best expression for the dependence of retention on the eluent composition and temperature. The average relative errors were 7.8% and 6% with use of the three- and the four-parameter equations which were found to be best for a given eluite, respectively. In view of the small decrease in error but significant increase in complexity and in data points with the use of the four-parameter equation, the three-parameter equation is recommended for general use.
在反相色谱中,对数保留因子κ与操作条件(包括流动相组成和柱温)之间的关系仍存在争议。早些时候,有人提出以下分析关系式用于烷基苯:κ = A1φ(1 - Tc/T) + A2/T + A3,其中φ是水-有机流动相的有机共溶剂的体积分数,T是绝对温度,A1 - A3是适用于洗脱物和固定相的参数。由于尚未针对仅通过一种机制保留的极性洗脱物对其进行测试,因此研究了其对54种极性和非极性洗脱物保留情况的描述,并与其他通常更为复杂的保留与操作条件之间关系的方程进行了比较。以下四参数方程对大多数数据的描述最佳:κ = A1φ(1 - Tc/T) + A2/T + A3 + A4φ。但无论是这个方程还是此处研究的任何其他四参数方程,都不是保留对洗脱液组成和温度依赖性的唯一最佳表达式。对于给定的洗脱物,使用被认为是最佳的三参数方程和四参数方程时,平均相对误差分别为7.8%和6%。鉴于使用四参数方程时误差减小幅度较小,但复杂性和数据点显著增加,因此建议一般使用三参数方程。