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聚苯胺包覆硅胶固定相的质子化作用会影响反相毛细管液相色谱中中性疏水溶质的保留行为。

Protonation of polyaniline-coated silica stationary phase affects the retention behavior of neutral hydrophobic solutes in reversed-phase capillary liquid chromatography.

作者信息

Taraba Lukáš, Křížek Tomáš, Kozlík Petr, Hodek Ondřej, Coufal Pavel

机构信息

Faculty of Science, Department of Analytical Chemistry, Charles University, Prague, Czech Republic.

出版信息

J Sep Sci. 2018 Jul;41(14):2886-2894. doi: 10.1002/jssc.201800261. Epub 2018 Jun 10.

Abstract

Because of its high conductivity when acid doped, polyaniline is known as a synthetic metal and is used in a wide range of applications, such as supercapacitors, biosensors, electrochromic devices, or solar and fuel cells. Emeraldine is the partly oxidized, stable form of polyaniline, consisting of alternating diaminobenzenoid and iminoquinoid segments. When acidified, the nitrogen atoms of emeraldine become protonated. Due to electrostatic repulsion between positive charges, the polarity and morphology of emeraldine chains presumably change; however, the protonation effects on emeraldine have not yet been clarified. Thus, we investigated these changes by reversed-phase capillary liquid chromatography using a linear solvation energy relationship approach to assess differences in dominant retention interactions under a significantly varied mobile phase pH. We observed that hydrophobicity dominates the intermolecular interactions under both acidic and alkaline eluent conditions, albeit to different extents. Therefore, by tuning the mobile phase pH, we can even modulate the retention of neutral hydrophobic solutes, such as aromatic hydrocarbons, because the pH-dependent charge and structure of polymer chains of the emeraldine-coated silica stationary phase show a mixed-mode separation mechanism.

摘要

由于在酸掺杂时具有高导电性,聚苯胺被称为合成金属,并被广泛应用于诸如超级电容器、生物传感器、电致变色器件或太阳能电池和燃料电池等领域。翠绿亚胺是聚苯胺部分氧化的稳定形式,由交替的二氨基苯型和亚氨基醌型链段组成。酸化时,翠绿亚胺的氮原子会质子化。由于正电荷之间的静电排斥,翠绿亚胺链的极性和形态可能会发生变化;然而,质子化对翠绿亚胺的影响尚未阐明。因此,我们采用线性溶剂化能关系方法,通过反相毛细管液相色谱研究这些变化,以评估在显著变化的流动相pH下主要保留相互作用的差异。我们观察到,疏水性在酸性和碱性洗脱条件下均主导分子间相互作用,尽管程度不同。因此,通过调节流动相pH,我们甚至可以调节中性疏水溶质(如芳烃)的保留,因为涂覆有翠绿亚胺的硅胶固定相的聚合物链的pH依赖性电荷和结构显示出混合模式分离机制。

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