298.15 K下n -甲基吡咯烷酮-水混合溶剂中铵离子的溶剂化热容特性

IF 0.7 4区 化学 Q4 CHEMISTRY, PHYSICAL
A. N. Novikov, E. I. Kostyleva, S. N. Solovyov
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引用次数: 0

摘要

测定了标准偏摩尔热容\({{\overline {C_{p}^{0}} }_{i}}\)的值以及在298.15 K时铵离子在mp -水混合溶剂中溶剂化过程中热容的变化\(\Delta \mathop {\text{.}}\nolimits_{{\text{solv}}} C_{{p{\text{,}}i}}^{0}\)。铵离子的\(\Delta \mathop {\text{.}}\nolimits_{{\text{solv}}} C_{{p{\text{,}}i}}^{0}\)值表示为四个贡献的总和:静电、空腔形成、溶剂中的结构变化和特定的离子-溶剂相互作用。贡献值是在实验数据和模型表示的基础上计算的。结合混合溶剂的结构,讨论了所得值与混合物组成的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Heat Capacity Characteristics of the Solvation of Ammonium Ions in Mixed Solvent N-Methylpyrrolidone–Water at 298.15 K

Heat Capacity Characteristics of the Solvation of Ammonium Ions in Mixed Solvent N-Methylpyrrolidone–Water at 298.15 K

Values of standard partial molar heat capacity \({{\overline {C_{p}^{0}} }_{i}}\) are determined along with changes \(\Delta \mathop {\text{.}}\nolimits_{{\text{solv}}} C_{{p{\text{,}}i}}^{0}\) in heat capacity during the solvation of ammonium ions in a mixed MP–water solvent at 298.15 K. The value of \(\Delta \mathop {\text{.}}\nolimits_{{\text{solv}}} C_{{p{\text{,}}i}}^{0}\) of ammonium ions is presented as the sum of four contributions: electrostatic, cavity formation, structural changes in the solvent, and specific ion-solvent interactions. Values of the contributions are calculated on the basis of experimental data and model representations. The dependences of the obtained values on the composition of the mixture are discussed in connection with the structure of the mixed solvent.

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来源期刊
CiteScore
1.20
自引率
14.30%
发文量
376
审稿时长
5.1 months
期刊介绍: Russian Journal of Physical Chemistry A. Focus on Chemistry (Zhurnal Fizicheskoi Khimii), founded in 1930, offers a comprehensive review of theoretical and experimental research from the Russian Academy of Sciences, leading research and academic centers from Russia and from all over the world. Articles are devoted to chemical thermodynamics and thermochemistry, biophysical chemistry, photochemistry and magnetochemistry, materials structure, quantum chemistry, physical chemistry of nanomaterials and solutions, surface phenomena and adsorption, and methods and techniques of physicochemical studies.
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