首页> 外文期刊>Journal of Solution Chemistry >Apparent Molar Volume and Isentropic Compressibility for the Binary Systems {Methyltrioctylammonium Bis(trifluoromethylsulfonyl)imide + Methyl Acetate or Methanol} and (Methanol + Methyl Acetate) at T=298.15, 303.15, 308.15 and 313.15 K and Atmospheric Pressure
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Apparent Molar Volume and Isentropic Compressibility for the Binary Systems {Methyltrioctylammonium Bis(trifluoromethylsulfonyl)imide + Methyl Acetate or Methanol} and (Methanol + Methyl Acetate) at T=298.15, 303.15, 308.15 and 313.15 K and Atmospheric Pressure

机译:二元体系{甲基三辛基铵双(三氟甲基磺酰基)酰亚胺+乙酸甲酯或甲醇}和(甲醇+乙酸甲酯)在T = 298.15、303.15、308.15和313.15 K和大气压下的表观摩尔体积和等熵压缩性

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The densities and speeds of sound for binary mixtures containing the solute ionic liquid (IL) methyltrioctylammonium bis(trifluoromethylsulfonyl)imide ([MOA]+[Tf2N]−), solute/solvent methanol, and solvent methyl acetate have been measured at 298.15, 303.15, 308.15 and 313.15 K at atmospheric pressure. The binary mixtures studied are ([MOA]+[Tf2N]− + methyl acetate or methanol), and (methanol + methyl acetate). The apparent molar volume, V φ and the apparent molar isentropic compressibility, k φ , have been evaluated from the experimental density and speed of sound data, respectively. The parameters of a Redlich–Mayer type equation were fitted to the apparent molar volume and apparent molar isentropic compressibility data. The apparent molar volume and apparent molar isentropic compressibility at infinite dilution, $V_{phi}^{0}$ and $k_{phi}^{0}$ , respectively, of the binary solutions have also been calculated at each temperature. The infinite dilution apparent molar volume indicates that intermolecular interactions for (IL + methyl acetate) mixtures are stronger than for (IL + methanol) mixtures at all temperatures except at 298.15 K, and that $V_{phi}^{0}$ for the (IL + methyl acetate or methanol) binary systems increases with an increase in temperature. For the (methanol + methyl acetate) system the intermolecular interaction are weaker and $V_{phi}^{0}$ also increases with an increase in temperature. Values of the infinite dilution apparent molar expansibility, $E_{phi}^{0}$ , indicate that the interaction between (IL + methyl acetate) is greater than for (IL + methanol) and (methanol + methyl acetate).
机译:含有溶质离子液体(IL)甲基三辛基铵双(三氟甲基磺酰基)酰亚胺([MOA] + [Tf2 N]-),溶质/溶剂的二元混合物的声速和密度在常压下,甲醇,乙酸甲酯和乙酸甲酯的测量值为298.15、303.15、308.15和313.15K。研究的二元混合物为([MOA] + [Tf2 N]- +乙酸甲酯或甲醇)和(甲醇+乙酸甲酯)。表观摩尔体积Vφ和表观摩尔等熵可压缩性kφ已分别根据声音数据的实验密度和速度进行了评估。将Redlich-Mayer型方程的参数拟合到表观摩尔体积和表观摩尔等熵可压缩性数据。还已在每个温度下计算了二元溶液在无限稀释下的表观摩尔体积和表观摩尔等熵可压缩性,分别为$ V_ {phi} ^ {0} $和$ k_ {phi} ^ {0} $。无限稀释的表观摩尔体积表明,在除298.15 K外的所有温度下,(IL +乙酸甲酯)混合物的分子间相互作用均比(IL +甲醇)混合物的分子间相互作用强,并且对于(IL +乙酸甲酯或甲醇)二元体系随温度升高而增加。对于(甲醇+乙酸甲酯)系统,分子间的相互作用较弱,并且随着温度的升高,$ V_ {phi} ^ {0} $也增加。无限稀释的表观摩尔可膨胀性的值$ E_ {phi} ^ {0} $表示(IL +乙酸甲酯)与(IL +甲醇)和(甲醇+乙酸甲酯)之间的相互作用更大。

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