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羟基官能化离子液体中的离子迁移率取决于阳离子聚集:用氘核核磁共振弛豫追踪烷基链长度行为。

Ion Mobility in Hydroxy-Functionalized Ionic Liquids Depends on Cationic Clustering: Tracking the Alkyl Chain Length Behavior with Deuteron NMR Relaxation.

作者信息

Khudozhitkov Alexander E, Stepanov Alexander G, Kolokolov Daniil I, Ludwig Ralf

机构信息

Boreskov Institute of Catalysis, Siberian Branch of Russian Academy of Sciences, Prospekt Akademika Lavrentieva 5, Novosibirsk 630090, Russia.

Novosibirsk State University, Pirogova Street 2, Novosibirsk 630090, Russia.

出版信息

J Phys Chem B. 2023 Nov 2;127(43):9336-9345. doi: 10.1021/acs.jpcb.3c05330. Epub 2023 Oct 19.

Abstract

Observing and quantifying the like-charge attraction in liquids and solutions is still challenging. However, we showed that elusive cation-cation hydrogen bonding may govern the structure and interaction in hydroxyl-functionalized ionic liquids. Therefore, cationic cluster formation depends on the shape, charge distribution, and functionality of the ions. We demonstrated by means of solid-state H NMR spectroscopy that cationic clusters change the structure and dynamics of ionic liquids. With increasing alkyl chain length, we observed two deuteron quadrupole coupling constants for the OD groups, differing by about 30 kHz. The lower value was assigned to the cation-cation interaction, indicating that the average (c-c) hydrogen bonds are stronger than the (c-a) hydrogen bonds between the cation and the anion despite the repulsive and attractive Coulomb interaction in the first and latter cases. Ion mobility could be studied by H NMR spectroscopy, although the deuterons in the hydrogen-bonded clusters underwent fast exchange. Our results also showed that simple relaxation models are not applicable anymore and that anisotropic motion must be considered.

摘要

观察和量化液体及溶液中的同电荷吸引仍然具有挑战性。然而,我们表明难以捉摸的阳离子-阳离子氢键可能支配着羟基官能化离子液体的结构和相互作用。因此,阳离子簇的形成取决于离子的形状、电荷分布和官能团。我们通过固态核磁共振光谱证明,阳离子簇改变了离子液体的结构和动力学。随着烷基链长度的增加,我们观察到OD基团的两个氘核四极耦合常数,相差约30 kHz。较低的值归因于阳离子-阳离子相互作用,这表明尽管在第一种和后一种情况下存在排斥和吸引的库仑相互作用,但平均(c-c)氢键比阳离子与阴离子之间的(c-a)氢键更强。尽管氢键簇中的氘核经历快速交换,但仍可通过核磁共振光谱研究离子迁移率。我们的结果还表明,简单的弛豫模型不再适用,必须考虑各向异性运动。

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