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新型2-烷基-1-乙基吡啶鎓离子液体:合成、离解能与挥发性

Novel 2-alkyl-1-ethylpyridinium ionic liquids: synthesis, dissociation energies and volatility.

作者信息

Vilas Miguel, Rocha Marisa A A, Fernandes Ana M, Tojo Emilia, Santos Luís M N B F

机构信息

Department of Organic Chemistry, University of Vigo, Faculty of Chemistry, Marcosende, Vigo, Spain.

出版信息

Phys Chem Chem Phys. 2015 Jan 28;17(4):2560-72. doi: 10.1039/c4cp05191b. Epub 2014 Dec 10.

Abstract

This work presents the synthesis, volatility study and electrospray ionization mass spectrometry with energy-variable collision induced dissociation of the isolated (cation)2(anion) of a novel series of 2-alkyl-1-ethyl pyridinium based ionic liquids, [(2)CN-2(1)C2Py][NTf2]. Compared to the imidazolium based ionic liquids, the new ionic liquid series presents a higher thermal stability and lower volatility. The (cation)2(anion) collision induced dissociation energies of both [(2)CN-2(1)C2Py][NTf2] and [CNPy][NTf2] pyridinium series show an identical trend with a pronounced decrease of the relative cation-anion interaction energy towards an almost constant value for N = 6. It was found that the lower volatility of [(2)CN-2(1)C2Py][NTf2] with a shorter alkyl chain length is due to its higher enthalpy of vaporization. Starting from [(2)C3(1)C2Py][NTf2], the lower volatility is governed by the combination of slightly lower entropies and higher enthalpies of vaporization, an indication of a higher structural disorder of the pyridinium based ionic liquids than the imidazolium based ionic liquids. Dissociation energies and volatility trends support the cohesive energy interpretation model based on the overlapping of the electrostatic and van der Waals functional interaction potentials.

摘要

本研究展示了一系列新型2-烷基-1-乙基吡啶基离子液体[(2)CN-2(1)C2Py][NTf2]的[(阳离子)2(阴离子)]⁺的合成、挥发性研究以及能量可变碰撞诱导解离的电喷雾电离质谱分析。与咪唑基离子液体相比,新型离子液体系列具有更高的热稳定性和更低的挥发性。[(2)CN-2(1)C2Py][NTf2]和[CNPy][NTf2]吡啶系列的[(阳离子)2(阴离子)]⁺碰撞诱导解离能呈现相同趋势,随着N = 6时相对阳离子-阴离子相互作用能显著降低至几乎恒定值。研究发现,[(2)CN-2(1)C2Py][NTf2]具有较短烷基链长度但挥发性较低,这归因于其较高的汽化焓。从[(2)C3(1)C2Py][NTf2]开始,较低的挥发性由略低的熵和较高的汽化焓共同决定,这表明吡啶基离子液体比咪唑基离子液体具有更高的结构无序度。解离能和挥发性趋势支持基于静电和范德华功能相互作用势重叠的内聚能解释模型。

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