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The Effect of the Methylation and N-H Acidic Group on the Physicochemical Properties of Imidazolium-Based Ionic Liquids

机译:甲基化和N-H酸性基团对基于咪唑鎓离子液体的理化性质的影响

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摘要

This work presents and highlights the differentiation of the physicochemical properties of the [C1Him][NTf2], [C2Him][NTf2], [1C12C1Him][NTf2], and [1C42C13C1im][NTf2] that are related with the strong bulk interaction potential, which highlights the differentiation on the physicochemical arising from the presence of the acidic group (N-H) as well as the methylation in position 2 (C(2)) of the imidazolium ring. Densities, viscosities, refractive indices and surface tensions in a wide range of temperatures, as well as, isobaric heat capacities at 298.15 K, for this IL series are presented and discussed. It was found that the volumetric properties are barely affected by the geometric and structural isomerization, following a quite regular trend. A linear correlation between the glass transition temperature, Tg, and the alkyl chain size was found; however, ILs with the acidic N-H group present a significant higher Tg than the [1CN-13C1im][NTf2] and [1CN3CNim][NTf2] series. It was found that the most viscous ILs, ([1C1Him][NTf2], [1C2Him][NTf2] and [1C12C1Him][NTf2]) have an acidic N-H group in the imidazolium ring in agreement with the observed increase of energy barrier of flow. The methylation in position 2, C(2), as well as, the N-H acidic group in the imidazolium ring, contribute to a significant variation in the cation-anion interactions and their dynamics, which is reflected in their charge distribution and polarizability leading to a significant differentiation of the refractive indices, surface tension and heat capacities. The observed differentiation of the physicochemical properties of the [1C1Him][NTf2], [1C2Him][NTf2], [1C12C1Him][NTf2], and [1C42C13C1im][NTf2] are an indication of the stronger bulk interaction potential, which highlights the effect that arises from the presence of the acidic group (N-H) as well as the methylation in position 2 of the imidazolium ring.
机译:这项工作提出并强调了[C1Him] [NTf2],[C2Him] [NTf2],[ 1 C1 2 C1Him] [NTf2]的理化特性的区别。 ,和[ 1 C4 2 C1 3 C1im] [NTf2]与强大的整体相互作用潜能相关,这突出表明了酸性基团(NH)的存在以及咪唑鎓环2位(C(2))的甲基化引起的物理化学反应。介绍并讨论了该IL系列在各种温度范围内的密度,粘度,折射率和表面张力,以及在298.15 K下的等压热容量。已发现,遵循相当规则的趋势,体积特性几乎不受几何和结构异构化的影响。发现玻璃化转变温度Tg和烷基链大小之间存在线性关系;然而,具有酸性NH基团的IL的Tg显着高于[ 1 CN-1 3 C1im] [NTf2]和[ 1 C N 3 C N im] [NTf 2 ]系列。发现最粘稠的IL([ 1 C 1 Him] [NTf 2 ],[ 1 C 2 Him] [NTf 2 ]和[ 1 C 1 2 C 1 Him] [NTf 2 ])在咪唑环上具有酸性的NH基团,这与观察到的流动能垒的增加相一致。位置2的甲基化(C(2)以及咪唑环中的NH酸性基团)导致阳离子-阴离子相互作用及其动力学的显着变化,这反映在它们的电荷分布和极化性中,从而导致折射率,表面张力和热容量的显着差异。 [ 1 C 1 Him] [NTf 2 ],[ 1 ]的理化性质的差异C 2 Him] [NTf 2 ],[ 1 C 1 2 C 1 Him] [NTf 2 ]和[ 1 C 4 2 C 1 3 C 1 im] [NTf 2 ]表示更强的整体相互作用潜能,这突出了酸性基团(NH)的存在以及咪唑环2位的甲基化产生的影响。

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