Department of Chemistry, University of Idaho, Moscow, Idaho, 83844-2343, USA.
J Phys Chem B. 2009 Nov 19;113(46):15162-9. doi: 10.1021/jp905079e.
Slightly viscous N-alkyl-substituted glycine ester ionic liquids were prepared via alkylation of glycine ethyl esters with appropriate haloalkanes followed by anion exchange with lithium bis(trifluoromethanesulfonyl)amide. These ionic liquids have been characterized by IR, NMR, elemental analysis, thermal stability, phase behavior, viscosity, and density. Compound 9 crystallizes in the monoclinic system, P2(1)/c. The viscosities of the N,N,N-trialkyl-substituted glycine ester ionic liquids (6, 8, 10) are in the approximately 200 to 400 cP range at 25 degrees C. While exhibiting liquid characteristics analogous to the traditional heterocyclic ionic liquids, these new liquids are much less viscous than known amino acid ionic liquids. The correlation of viscosity and temperature was determined. To understand the influence of the alkyl and ester-substituted groups on viscosity, the electronic distributions and the electrostatic potential surfaces of the glycine-based cations, including glycine (Gly(+)), glycine ethyl ester (GlyET(+)), N,N-dimethyl glycine (DMGly(+)), N,N-dimethyl glycine ethyl ester (DMGlyET(+)), N,N-dimethyl-N-propyl glycine ethyl ester (DMPGlyET(+)), N,N-dimethyl-N-3-fluoropropyl glycine ethyl ester (DMPFGlyET(+)), and N-butyl-N,N-dimethyl glycine ethyl ester (DMBGlyET(+)) cations have been investigated and analyzed. The possible effects on the viscosity coming from the intermolecular interactions arising from Coulomb interactions, hydrogen bonding, polarizability effects, and van der Waals interactions are considered.
通过甘氨酸乙酯与适当的卤代烷烃的烷基化反应,然后与双(三氟甲烷磺酰基)酰亚胺锂进行阴离子交换,制备了略带粘性的 N-烷基取代的甘氨酸酯离子液体。这些离子液体通过 IR、NMR、元素分析、热稳定性、相行为、粘度和密度进行了表征。化合物 9 结晶为单斜晶系,P2(1)/c。在 25°C 时,N,N,N-三烷基取代的甘氨酸酯离子液体(6、8、10)的粘度约为 200 至 400 cP。虽然这些新液体具有类似于传统杂环离子液体的液体特性,但它们的粘度远低于已知的氨基酸离子液体。确定了粘度和温度的相关性。为了了解烷基和酯取代基对粘度的影响,研究了基于甘氨酸的阳离子,包括甘氨酸(Gly(+))、甘氨酸乙酯(GlyET(+))、N,N-二甲基甘氨酸(DMGly(+))、N,N-二甲基甘氨酸乙酯(DMGlyET(+))、N,N-二甲基-N-丙基甘氨酸乙酯(DMPGlyET(+))、N,N-二甲基-N-3-氟丙基甘氨酸乙酯(DMPFGlyET(+))和 N-丁基-N,N-二甲基甘氨酸乙酯(DMBGlyET(+))阳离子的电子分布和静电势表面,并进行了分析。考虑了来自库仑相互作用、氢键、极化效应和范德华相互作用的分子间相互作用对粘度的可能影响。