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Protic Ionic Liquids Based on a Super-Strong Base: Correlation between Physicochemical Properties and ΔpK_a

机译:基于超强基础的质子离子液体:物理化学特性与ΔPK_A之间的相关性

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1,8-Diazabicyclo[5,4,0]undec-7-ene (DBU) was neutralized by a range of Bronsted acids with a wide variation in the ΔpK_a values of their constituent acids and base. The salts exhibited properties characteristic of an ionic liquid, such as high thermal stability and liquidity near ambient temperature. Analyses of thermal behaviors and temperature dependencies of density, viscosity (η), and ionic conductivity were made to correlate the physicochemical properties with the ΔpK_a value of the obtained protic ionic liquids (PILs). Differential thermal analyses (DTA) revealed that PILs with high ΔpK_a values underwent thermal decomposition resembling their aprotic counterparts; however, PILs with a low ΔpK_a exhibited the evaporation of neutral species progressively generated from the shifting of the equilibrium toward neutral components during the weight loss process. The ionicity of the PILs, determined from Walden plots utilizing density, conductivity, and viscosity data, was found to decrease as temperature increased, and this effect was more pronounced for low ΔpK_a values, possibly because of the shifting of the equilibrium and the imbalance between strong hydrogen bonds and Coulombic interactions. Fragility, estimated from plots of log(η) versus the scaled temperature T_g/T was found to be lower for PILs than for DBU owing to neutralization. [DBU]-based PILs exhibit intermediate fragility in nature, but this fragility becomes more prominent for PILs with low ΔpK_a values.
机译:1,8-二氮杂双环[5,4,0] UNDEC-7-eNE(DBU)通过一系列伪造酸中和,其构成酸和碱的ΔPK_A值宽变化。盐表现出离子液体的特性,例如高温稳定性和近环境温度的流动性。对密度,粘度(η)和离子导电性的热行为和温度依赖性的分析与所得质量离子液体(Pils)的ΔPK_A值相关联的物理化学性质。差分热分析(DTA)揭示了具有高ΔPK_A值的PIL,而具有类似于其非质子对应物的热分解;然而,具有低ΔPK_A的PILs表现出在体重损失过程中从平衡朝向中性成分的迁移逐渐产生的中性物种蒸发。从使用密度,导电性和粘度数据的沃尔登图确定的pils的离子性降低,随着温度的增加,这种效果对于低Δpk_a值更加明显,可能是因为平衡和之间的不平衡强氢键和库仑相互作用。由于中和,发现从Log(η)的块与缩放温度T_g / T的碎片估计为缩放温度T_G / T。基于ΔPK_A值的PILS,基于ΔPK_A值的PILs的中间脆性表现出中间碎片。

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