Atapattu Sanka N
CanAm Bioresearch Inc., Winnipeg, Manitoba, Canada.
J Sep Sci. 2022 May;45(9):1487-1492. doi: 10.1002/jssc.202200033. Epub 2022 Feb 20.
The solvation parameter model system constants and retention factors were used to interpret retention properties of 39 calibration compounds on a biphenylsiloxane-bonded stationary phase (Kinetex biphenyl) for acetone-water binary mobile phase systems containing 30-70% v/v. Variation in system constants, phase ratios, and retention factors of acetone-water binary mobile phases systems were compared with more commonly used acetonitrile and methanol mobile phase systems. Retention properties of acetone mobile phases on a Kinetex biphenyl column were more similar to that of acetonitrile than methanol mobile phases except with respect to selectivity equivalency. Importantly, selectivity differences arising between acetone and acetonitrile systems (the lower hydrogen-bond basicity of acetone-water mobile phases and differences in hydrogen-bond acidity, cavity formation and dispersion interactions) could be exploited in reversed-phase liquid chromatography method development on a Kinetex biphenyl stationary phase.
利用溶剂化参数模型系统常数和保留因子,解释了39种校准化合物在联苯硅氧烷键合固定相(Kinetex联苯)上,对于含30 - 70% v/v丙酮 - 水二元流动相系统的保留特性。将丙酮 - 水二元流动相系统的系统常数、相比和保留因子的变化,与更常用的乙腈和甲醇流动相系统进行了比较。在Kinetex联苯柱上,丙酮流动相的保留特性除了在选择性等效方面外,与乙腈流动相的保留特性比甲醇流动相更相似。重要的是,在Kinetex联苯固定相上进行反相液相色谱方法开发时,可以利用丙酮和乙腈系统之间产生的选择性差异(丙酮 - 水流动相较低的氢键碱性以及氢键酸度、空穴形成和色散相互作用的差异)。