Akbay Cevdet, Shamsi Shahab A
Department of Chemistry, Center of Biotechnology and Drug Design, Georgia State University, Atlanta, GA 30303, USA.
Electrophoresis. 2004 Feb;25(4-5):635-44. doi: 10.1002/elps.200305764.
The effect of hydrocarbon chain length on chemical selectivity in micellar electrokinetic chromatography (MEKC) was investigated using polymeric sulfated surfactants: poly-(sodium 7-octenyl sulfate), poly(sodium 8-nonenyl sulfate), poly(sodium 9-decenyl sulfate), and poly(sodium 10-undecenyl sulfate). Linear solvation energy relationships (LSERs) and free energy of transfer studies were conducted to predict the selectivity differences between the four polymeric surfactants. The overall nature of the solute/ polymeric micelle interactions was found to be different despite the fact that all polymeric surfactants have the same head group. The polar character and acidic strength of the polymeric surfactant are found to decrease as the hydrocarbon chain length of the surfactant is increased. On the other hand, the polarizability of the polymeric sulfated surfactants increases (upon interacting with solute lone-pair electrons) with increasing hydrocarbon chain length. The LSER results show that the solute size and hydrogen bond accepting ability play the key roles in MEKC retention.
聚(7-辛烯基硫酸钠)、聚(8-壬烯基硫酸钠)、聚(9-癸烯基硫酸钠)和聚(10-十一烯基硫酸钠),研究了烃链长度对胶束电动色谱(MEKC)中化学选择性的影响。进行了线性溶剂化能关系(LSERs)和转移自由能研究,以预测四种聚合表面活性剂之间的选择性差异。尽管所有聚合表面活性剂具有相同的头基,但发现溶质/聚合胶束相互作用的整体性质不同。发现随着表面活性剂烃链长度的增加,聚合表面活性剂的极性特征和酸性强度降低。另一方面,随着烃链长度的增加,聚合硫酸化表面活性剂的极化率(在与溶质孤对电子相互作用时)增加。LSER结果表明,溶质大小和氢键接受能力在MEKC保留中起关键作用。