Atapattu Sanka N, Eggers Kimberly, Poole Colin F, Kiridena Waruna, Koziol Wladyslaw W
Department of Chemistry, Wayne State University, Detroit, MI 48202, USA.
J Chromatogr A. 2009 Mar 6;1216(10):1640-9. doi: 10.1016/j.chroma.2008.11.057. Epub 2008 Nov 27.
The solvation parameter model is used to characterize the separation properties of four open-tubular columns for gas chromatography at low and intermediate column temperatures covering the range 60-240 degrees C. Solute descriptors for compounds suitable for characterizing columns over the intermediate temperature range are optimized using an iterative procedure. These compounds, and those previously recommended for the lower temperature range, are used to provide system constant maps for Rxi-5Sil MS, Rxi-17, Rtx-TNT and Rtx-TNT2 columns suitable for merging with a system constants database with entries for more than 50 columns. The Rxi-5Sil MS column is shown to have separation properties similar to the silphenylene-dimethylsiloxane copolymer stationary phase (DB-5ms) but these two columns are not selectivity equivalent. The Rxi-17 column has similar separation properties to the Rxi-50 column but is not selectivity equivalent to it. Rxi-17 is a poly(dimethyldiphenylsiloxane) stationary phase containing 50% diphenylsiloxane monomer and Rxi-50 a poly(methylphenylsiloxane) stationary phase with the same nominal composition but a different monomer structure. The difference in monomer structure results in only small changes in selectivity, and for all but the most demanding separations, the columns are interchangeable. The application-specific column (energetic materials) Rtx-TNT is shown to be selectivity equivalent to columns coated with the poly(dimethyldiphenylsiloxane) stationary phases containing 5% diphenylsiloxane monomer. The Rtx-TNT2 column is selectivity equivalent to the proprietary Rtx-OPPesticides column. Rtx-OPPesticides is a low bleed stationary phase, possibly based on silarylene-siloxane chemistry, with a composition designed to mimic the separation properties of the poly(dimethylmethyltrifluoropropylsiloxane) stationary phases containing 35% methyltrifluoropropylsiloxane monomer. Selectivity equivalence of columns is determined by the statistical agreement in system constants at 20 degrees C intervals over the full temperature range from 60 to 240 degrees C, and by the construction of correlation plots for the retention factors of varied compounds for the same temperature intervals.
溶剂化参数模型用于表征四根用于气相色谱的开管柱在60 - 240℃的低、中柱温范围内的分离性能。使用迭代程序优化了适用于表征中间温度范围柱的化合物的溶质描述符。这些化合物以及先前推荐用于较低温度范围的化合物,用于提供适用于与包含50多种柱条目的系统常数数据库合并的Rxi - 5Sil MS、Rxi - 17、Rtx - TNT和Rtx - TNT2柱的系统常数图。结果表明,Rxi - 5Sil MS柱具有与硅亚苯基 - 二甲基硅氧烷共聚物固定相(DB - 5ms)相似的分离性能,但这两根柱的选择性并不等效。Rxi - 17柱具有与Rxi - 50柱相似的分离性能,但选择性也不等同于它。Rxi - 17是一种含有50%二苯基硅氧烷单体的聚(二甲基二苯基硅氧烷)固定相,而Rxi - 50是一种具有相同标称组成但单体结构不同的聚(甲基苯基硅氧烷)固定相。单体结构的差异仅导致选择性有微小变化,对于除最苛刻分离之外的所有分离,这些柱是可互换的。特定应用柱(含能材料)Rtx - TNT的选择性等同于涂覆有含5%二苯基硅氧烷单体的聚(二甲基二苯基硅氧烷)固定相的柱。Rtx - TNT2柱的选择性等同于专利的Rtx - OPPesticides柱。Rtx - OPPesticides是一种低流失固定相,可能基于硅芳撑 - 硅氧烷化学,其组成设计用于模拟含35%甲基三氟丙基硅氧烷单体的聚(二甲基甲基三氟丙基硅氧烷)固定相的分离性能。柱的选择性等效性通过在60至240℃的整个温度范围内以20℃间隔的系统常数的统计一致性以及在相同温度间隔内不同化合物保留因子的相关图的构建来确定。