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通过芳香π相互作用实现 H/D 同位素异构体的可调液相色谱分离。

Tunable Liquid Chromatographic Separation of H/D Isotopologues Enabled by Aromatic π Interactions.

机构信息

Graduate School of Engineering, Kyoto University, Katsura, Nishikyo-ku, Kyoto 615-8510, Japan.

Center for Environmental Measurement and Analysis, National Institute for Environmental Studies, Onogawa 16-2, Tsukuba, Ibaraki 305-8506, Japan.

出版信息

Anal Chem. 2020 Mar 3;92(5):4065-4072. doi: 10.1021/acs.analchem.9b05672. Epub 2020 Feb 18.

Abstract

We report hydrogen/deuterium (H/D) isotope effects based on weak intermolecular interactions with polar functional groups and aromatic rings in liquid chromatography (LC). Various LC experiments with different aromatic analytes, separation media, and nonpolar mobile phases were conducted under normal phase LC conditions, where the hydrophobic interaction was completely suppressed. The separation media that had polar functional groups, such as silanol groups, allowed for higher separation efficiencies for the pairs of aromatic H/D isotopologues. In comparing the C NMR spectra of protiated and deuterated aromatic analytes, the electron density of the deuterated analyte was found to be slightly higher than that of the protiated analytes. In the case of silanol functional groups, aromatic rings of the analyte acted as donors through the OH-π interaction to hydrogen atoms in the silanol groups. Thus, the deuterated analytes were able to be greatly retained by the stronger OH-π interactions. Furthermore, a C-fullerene bonded monolithic column (C70 column), which effectively provides CH-π interactions, allowed the opposite isotope effect. Briefly, an electrostatic attraction based on the dipole-(induced) dipole interaction dominated in the CH-π interactions, according to a van't Hoff analysis. Hence, the bonding lengths of the C-H or D bonds were sensitively affected, such that we were able to conclude that the CH-π interaction depended on the geometric effect. Applying these opposing H/D isotope effects, we were able to finally demonstrate effective H/D isotopologue separations by utilizing the complementary action of the OH-π and CH-π interactions.

摘要

我们报告了基于弱分子间相互作用与极性官能团和芳香环在液相色谱(LC)中的氢键/氘氢键(H/D)同位素效应。在正相 LC 条件下进行了各种具有不同芳香分析物、分离介质和非极性流动相的 LC 实验,其中完全抑制了疏水相互作用。具有极性官能团(如硅醇基团)的分离介质允许对芳香族 H/D 同位素对具有更高的分离效率。在比较氘代和氕代芳香分析物的 C NMR 光谱时,发现氘代分析物的电子密度略高于氕代分析物。在硅醇官能团的情况下,分析物的芳环通过 OH-π 相互作用作为供体作用于硅醇基团中的氢原子。因此,氘代分析物能够通过更强的 OH-π 相互作用被强烈保留。此外,提供 CH-π 相互作用的全碳富勒烯键合整体柱(C70 柱)允许相反的同位素效应。简而言之,根据范特霍夫分析,基于偶极子-(诱导)偶极子相互作用的静电吸引在 CH-π 相互作用中占主导地位。因此,C-H 或 D 键的键长受到敏感影响,因此我们能够得出结论,CH-π 相互作用取决于几何效应。应用这些相反的 H/D 同位素效应,我们最终能够通过利用 OH-π 和 CH-π 相互作用的互补作用来实现有效的 H/D 同位素对分离。

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