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氘同位素对疏水相互作用的影响:疏水相中色散相互作用的重要性。

Deuterium isotope effects on hydrophobic interactions: the importance of dispersion interactions in the hydrophobic phase.

作者信息

Turowski Maciej, Yamakawa Naoki, Meller Jaroslaw, Kimata Kazuhiro, Ikegami Tohru, Hosoya Ken, Tanaka Nobuo, Thornton Edward R

机构信息

Department of Polymer Science and Engineering, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, Kyoto 606-8585, Japan.

出版信息

J Am Chem Soc. 2003 Nov 12;125(45):13836-49. doi: 10.1021/ja036006g.

Abstract

Hydrogen/deuterium isotope effects on hydrophobic binding were examined by means of reversed-phase chromatographic separation of protiated and deuterated isotopologue pairs for a set of 10 nonpolar and low-polarity compounds with 10 stationary phases having alkyl and aryl groups bonded to the silica surface. It was found that protiated compounds bind to nonpolar moieties attached to silica more strongly than deuterated ones, demonstrating that the CH/CD bonds of the solutes are weakened or have less restricted motions when bound in the stationary phase compared with the aqueous solvent (mobile phase). The interactions responsible for binding have been further characterized by studies of the effects of changes in mobile phase composition, temperature dependence of binding, and QSRR (quantitative structure-chromatographic retention relationship) analysis, demonstrating the importance of enthalpic effects in binding and differentiation between the isotopologues. To explain our results showing the active role of the hydrophobic (stationary) phase we propose a plausible model that includes specific contributions from aromatic edge-to-face attractive interactions and attractive interactions of aliphatic groups with the pi clouds of aromatic groups present as the solute or in the stationary phase.

摘要

通过反相色谱法分离一组10种非极性和低极性化合物的质子化和氘代同位素对,研究了氢/氘同位素对疏水结合的影响,这些化合物与10种固定相一起使用,固定相的烷基和芳基键合在硅胶表面。结果发现,质子化化合物比氘代化合物更强烈地结合到硅胶上连接的非极性部分,这表明与水溶剂(流动相)相比,溶质的C-H/C-D键在固定相中结合时被削弱或运动受限较小。通过研究流动相组成变化的影响、结合的温度依赖性以及定量结构-色谱保留关系(QSRR)分析,进一步表征了负责结合的相互作用,证明了焓效应在结合和同位素异构体区分中的重要性。为了解释我们的结果所显示的疏水(固定)相的积极作用,我们提出了一个合理的模型,该模型包括芳香族边缘到面的吸引相互作用以及脂肪族基团与作为溶质或在固定相中存在的芳香族基团的π云的吸引相互作用的特定贡献。

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