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Liquid range of ionic liquid - Metal salt mixtures for electrochemical applications

机译:电化学应用离子液体 - 金属盐混合物的液体范围

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The effect of the nitrate salt addition on the liquid range of the protic ionic liquid ethylammonium nitrate (EAN) was studied in this work. The salts used were monovalent, LiNO3; divalent, Mg(NO3)(2) and Ca (NO3)(2), and trivalent, Al(NO3)(3); inorganic salts containing metals relevant for electrochemical applications. Solid-liquid transitions, which define the lower limit of the liquid range of the fluids, were determined using differential scanning calorimetry (DSC), whereas the upper limit, which is given by degradation or boiling temperatures, was determined by means of thermogravimetric analysis (TGA). Our results show that salt addition induces melting-point depressions, but no significant boiling point elevations were detected. The so-called nanostructured solvation mechanism is used in order to rationalize the thermodynamics of the mixtures in terms of the occurrence of highly incompressible, low mobility solvation complexes [M(NO3)(n)](+)(zn) in the polar cavities of the IL giving rise to pseudo-lattice nanocrystals that are stable in the liquid phase. (C) 2019 Elsevier Ltd.
机译:在这项工作中研究了硝酸盐对硝酸异构液乙基氨酸(EAN)的液体范围的影响。使用的盐是单价的,LinO3;二价,mg(no3)(2)和ca(no3)(2)和三价,al(no3)(3);含有与电化学应用相关的金属的无机盐。使用差示扫描量热法(DSC)测定定义流体液体范围的下限的固液过渡,而通过劣化或沸腾温度给出的上限,通过热重分析测定( TGA)。我们的研究结果表明,盐添加诱导熔点凹陷,但未检测到显着的沸点升高。所谓的纳米结构溶剂化机构用于在极性腔中发生高度不可压缩的低迁移率溶剂化合物[M(NO 3)(N)](+)(+)(Zn)的出现,使混合物的热力学能力合理化在液相中产生稳定的伪晶格纳米晶体的IL。 (c)2019年elestvier有限公司

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