Wu Di, Lucy Charles A
Department of Chemistry, University of Alberta, Gunning/Lemieux Chemistry Centre, Edmonton, Alberta T6G 2G2 Canada.
Department of Chemistry, University of Alberta, Gunning/Lemieux Chemistry Centre, Edmonton, Alberta T6G 2G2 Canada.
J Chromatogr A. 2016 Dec 2;1475:31-40. doi: 10.1016/j.chroma.2016.10.068. Epub 2016 Oct 28.
The Snyder model and the Soczewiñski model are compared on classic NPLC bonded phases using literature data, and on the charge transfer 2, 4-dinitroanilinopropyl (DNAP) column using experimentally collected data. Overall, the Snyder model slightly better predicts the n-slope than the Soczewiñski model. However, both models give comparable uncertainty in predicting n-slope for a given compound. The number of aromatic double bonds was the most suitable descriptor for estimating the relative n-slope of PAHs, as it correlated with behavior better than the number of aromatic rings and is simpler to calculate than the solute adsorption area. On the DNAP phase, a modified Soczewiñski model is suggested to allow for the significant contribution of the aromatic rings to the n-slope. For classic NPLC bonded phases and DNAP columns, the contribution of polar group to the n-slope parallels the adsorption energy of each polar group.
利用文献数据,在经典正相液相色谱键合相上对斯奈德模型和索切维斯基模型进行了比较,并利用实验收集的数据在电荷转移2,4-二硝基苯胺丙基(DNAP)柱上进行了比较。总体而言,斯奈德模型在预测n斜率方面比索切维斯基模型略胜一筹。然而,对于给定的化合物,两种模型在预测n斜率时给出的不确定性相当。芳香双键的数量是估算多环芳烃相对n斜率最合适的描述符,因为它与行为的相关性比芳香环的数量更好,并且比溶质吸附面积更易于计算。在DNAP相上,建议采用修正的索切维斯基模型,以考虑芳香环对n斜率的显著贡献。对于经典正相液相色谱键合相和DNAP柱,极性基团对n斜率的贡献与每个极性基团的吸附能平行。