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苯甲腈作为离子液体中局部环境的探针。

Benzonitrile as a probe of local environment in ionic liquids.

机构信息

Center for Green Chemistry and Catalysis, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, 730000, China.

出版信息

J Phys Chem B. 2013 Mar 7;117(9):2764-72. doi: 10.1021/jp312251q. Epub 2013 Feb 21.

DOI:10.1021/jp312251q
PMID:23398446
Abstract

Because of its sensitivity to chemical and electrostatic characteristics, nitrile group as an infrared (IR) probe to monitor the local structure, folding kinetics, and electrostatic environment of protein, or solvation of molecular solvents, has attracted increasing attention. Herein, by choosing benzonitrile and imidazolium ionic liquids (ILs) as the IR probe and model ILs, respectively, we report that the nitrile stretching vibration (νCN) could be utilized as a simple and substantial IR probe to monitor the local environment of ILs such as hydrogen bonding (H-bonding) as well as intrinsic electric field. In 1-alkyl-3-methylimidazolium-based non-hydroxyl ILs, the νCN is in a "free" state, and is less affected by the alkyl chain, while it significantly decreases with the effective anion charge. In 1-(2-hydroxyethyl)-3-methylimidazolium-based hydroxyl ILs, however, a distinct anion-dependent νCN forming H-bonding with the hydroxyl is also observed besides the "free" νCN band. The "free" component of νCN can be further employed to determine the intrinsic electric field in both non-hydroxyl (directly) and hydroxyl (indirectly by subtracting H-bonding contribution) ILs by using vibrational Stark effect. Moreover, the result suggests that benzonitrile is preferentially located in the charge domain in ILs and it could be a more suitable probe to report the ionic network rather than the nonpolar domain in ILs.

摘要

由于其对化学和静电特性的敏感性,腈基作为一种红外(IR)探针,可以监测蛋白质的局部结构、折叠动力学和静电环境,或分子溶剂的溶剂化作用,因此引起了越来越多的关注。在这里,我们选择苯腈和咪唑离子液体(ILs)分别作为 IR 探针和模型 ILs,报告说腈伸缩振动(νCN)可以用作一种简单而重要的 IR 探针来监测 ILs 的局部环境,如氢键(H-键合)和固有电场。在基于 1-烷基-3-甲基咪唑的非羟基 ILs 中,νCN 处于“自由”状态,受烷基链的影响较小,而随着有效阴离子电荷的增加,其显著减小。然而,在基于 1-(2-羟乙基)-3-甲基咪唑的羟基 ILs 中,除了“自由”νCN 带之外,还观察到明显的阴离子依赖性 νCN 与羟基形成氢键。通过振动斯塔克效应,νCN 的“自由”部分可以进一步用于确定非羟基(直接)和羟基(通过减去氢键贡献间接)ILs 中的固有电场。此外,结果表明苯腈优先位于 ILs 的电荷域中,并且它可能是报告离子网络而不是 ILs 中非极性域的更合适的探针。

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