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Solvatochromic parameters of deep eutectic solvents formed by ammonium-based salts and carboxylic acids

机译:铵盐和羧酸形成的深共熔溶剂的溶剂变色参数

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摘要

Deep eutectic solvents (DES) have been studied in a wide range of applications, and despite their potential as sustainable solvents, detailed knowledge on their solvatochromic parameters is still lacking. To overcome this problem, in this work, the Kamlet Taft (KT) solvatochromic parameters, namely the hydrogen-bond acidity, hydrogen-bond basicity and dipolarity/polarizability, of a wide range of DES composed of ammonium-based salts as hydrogen bond acceptors (HBAs), and carboxylic acids as hydrogen bond donors (HBDs), were determined aiming at better understanding the influence of the chemical structure of the DES components on their polarity. It is shown that the high acidity of the DES investigated is mainly provided by the organic acid present in the mixture, and that an increase of the alkyl side chain of both the HBA and the HBD species leads to a lower ability of the solvent to donate protons. On the other hand, the ammonium salt plays the major role on the hydrogen-bond basicity of DES. Contrarily to the hydrogen-bond acidity, an increase in the length of the aliphatic moieties of both the carboxylic acid and salt cation results in solvents with higher ability to accept protons. The dipolarity/polarizability of DES is mainly defined by the ionic species present, and tend to decrease with the increase of the aliphatic moiety of the organic acid. In general, DES composed of ammonium-based salts and carboxylic acids present a higher capacity to donate and accept protons when compared to most of the ionic liquids or organic molecular solvents.
机译:深共晶溶剂(DES)已在广泛的应用中进行了研究,尽管它们具有可持续溶剂的潜力,但仍缺乏有关溶剂变色参数的详细知识。为了克服这个问题,在这项工作中,Kamlet Taft(KT)溶剂变色参数,即由铵盐作为氢键受体的各种DES的氢键酸度,氢键碱度和偶极/极化率为了更好地理解DES组分的化学结构对其极性的影响,确定了HBA和羧酸作为氢键供体(HBD)。结果表明,所研究的DES的高酸度主要是由混合物中存在的有机酸提供的,而HBA和HBD物种的烷基侧链的增加导致溶剂的捐赠能力降低。质子另一方面,铵盐在DES的氢键碱性中起主要作用。与氢键酸度相反,羧酸和盐阳离子的脂族部分的长度增加导致溶剂具有更高的接受质子的能力。 DES的双极性/可极化性主要由存在的离子种类决定,并且随着有机酸脂肪族部分的增加而趋于降低。通常,与大多数离子液体或有机分子溶剂相比,由铵盐和羧酸组成的DES表现出更高的捐赠和接受质子的能力。

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