Sázelová Petra, Koval Dušan, Severa Lukáš, Teplý Filip, Kašička Václav
Institute of Organic Chemistry and Biochemistry, Czech Academy of Sciences, Prague, Czech Republic.
Electrophoresis. 2017 Aug;38(15):1913-1921. doi: 10.1002/elps.201700077. Epub 2017 May 11.
CE using randomly highly sulfated α-, β-, and γ-CDs (S-α-CD, S-β-CD, S-γ-CD), sulfobutylether-β-CD (SBE-β-CD), single isomer (6-O-sulfo) α-, β-, and γ-CDs, and their derivatives as stereoselectors was applied to chiral analysis of polypyridyl complexes of [Ru(bpy) ] , [Ru(phen) ] , and [Fe(phen) ] (bpy = 2,2'-bipyridine; phen = 1,10 phenanthroline). The best separations of Δ- and Λ-enantiomers of the these complexes with high resolution (up to R = 7.0) and short analysis times (10-20 min) were achieved in the BGE composed of 22 mM NaOH/35 mM H PO , pH 2.4, containing 1.5-6.0 mM S-α-CD or S-β-CD, or SBE-β-CD as chiral selectors. The developed method was applied to the assessment of enantiomeric purity of several samples of [Ru(bpy) ] catalyst. CE experiments were performed in a homemade analyzer equipped with bare or hydroxypropylcellulose-coated fused-silica capillaries (total/effective length 40/29 cm, id/od 50/375 μm) and an UV absorption detector operating at 206 nm. In addition to chiral analysis, apparent binding constants of the complexes of [Ru(bpy) ] , [Ru(phen) ] , and [Fe(phen) ] enantiomers with five sulfated CDs (S-α-CD, S-β-CD, S-γ-CD, SBE-β-CD, and 16Me-8S-γ-CD) were determined from the dependence of their effective electrophoretic mobilities on the concentration of the CDs in the BGE by nonlinear regression analysis. Calculated apparent binding constants of these complexes were found to be in the (1.10-4.66) × 10 L/mol range. Moreover, it was shown that at selected concentrations of some S-CDs and suppressed or very low electroosmotic flow, the exceptional enantioseparations with infinite resolution could be achieved.
使用随机高度硫酸化的α-、β-和γ-环糊精(S-α-CD、S-β-CD、S-γ-CD)、磺丁基醚-β-环糊精(SBE-β-CD)、单一异构体(6-O-磺基)α-、β-和γ-环糊精及其衍生物作为立体选择剂的毛细管电泳被应用于[Ru(bpy)₃]²⁺、[Ru(phen)₃]²⁺和[Fe(phen)₃]²⁺(bpy = 2,2'-联吡啶;phen = 1,10-菲咯啉)的多吡啶配合物的手性分析。在由22 mM NaOH/35 mM H₃PO₄、pH 2.4组成的背景电解质中,含有1.5 - 6.0 mM S-α-CD或S-β-CD或SBE-β-CD作为手性选择剂,实现了这些配合物的Δ-和Λ-对映体的最佳分离,分辨率高(高达R = 7.0)且分析时间短(10 - 20分钟)。所开发的方法被应用于评估几种[Ru(bpy)₃]²⁺催化剂样品的对映体纯度。毛细管电泳实验在自制分析仪中进行,该分析仪配备了未涂层或羟丙基纤维素涂层的熔融石英毛细管(总长度/有效长度40/29 cm,内径/外径50/375 μm)以及在206 nm下运行的紫外吸收检测器。除了手性分析外,通过非线性回归分析,根据[Ru(bpy)₃]²⁺、[Ru(phen)₃]²⁺和[Fe(phen)₃]²⁺对映体与五种硫酸化环糊精(S-α-CD、S-β-CD、S-γ-CD、SBE-β-CD和16Me-8S-γ-CD)的配合物的有效电泳迁移率对背景电解质中环糊精浓度的依赖性,测定了它们的表观结合常数。发现这些配合物的计算表观结合常数在(1.10 - 4.66)×10³ L/mol范围内。此外,结果表明,在选定的一些S-环糊精浓度下以及抑制或非常低的电渗流情况下,可以实现具有无限分辨率的优异对映体分离。