HEAT OF HYDRATION OF DIETHYLSULFONE BY QUANTUM CHEMICAL CALCULATION

A. S. Mkhitaryan, Z. Papanyan, L. Gabrielyan, S. Markarian
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Abstract

The quantum chemical study of the hydration of diethyl sulfone was performed by using Gaussian 09 software package. The conformational analysis of the isolated molecule of diethyl sulfone is performed by the restricted Hartree-Fock (RHF) and the density functional theory (DFT/B3PW91) methods with 6-311++G(d,p) extended basis set. The analysis of the potential energy surface revealed the existence of four stable conformers of diethyl sulfone with different degrees of degeneracy. The nature of stationary points on the potential energy surface is verified by the complete gas phase optimization and the vibrational analysis. The global minimum is the conformer with two (CCSC) dihedral angles equal 180°. The fractional population distribution of different conformers is determined by Boltzmann distribution. The average energy of the diethyl sulfone molecule in vacuum is calculated. To account the effect of solvent the self-consistent reaction field (SCRF) method, particularly, solvent model based on electron density (SMD), was employed. It is shown, that solvent affects on the relative population of conformers. The thermodynamic parameters, in particular enthalpy, for the conformers of diethyl sulfone are determined both in the gas phase and in the aqueous solution. The average energy of diethyl sulfone in water is calculated. It is shown, that although the dissolution of crystalline diethyl sulfone in water is an endothermic process, the hydration of diethyl sulfone molecules occurs with the release of heat. The heat of dissolution of diethyl sulfone calculated by the density functional theory is consistent with the experimental data.
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二乙基砜水化热的量子化学计算
采用高斯09软件对二乙基砜水化反应进行了量子化学研究。采用6-311++G(d,p)扩展基集,采用限制性Hartree-Fock (RHF)和密度泛函理论(DFT/B3PW91)方法对二乙基砜分离分子进行了构象分析。势能面分析表明,二乙基砜存在4种不同简并程度的稳定构象。通过完整的气相优化和振动分析,验证了势能面上稳态点的性质。全局最小值为两个(CCSC)二面角等于180°的共形体。不同构象的分数总体分布由玻尔兹曼分布决定。计算了真空中二乙基砜分子的平均能。为了考虑溶剂的影响,采用了自洽反应场(SCRF)方法,特别是基于电子密度的溶剂模型。结果表明,溶剂对构象的相对占比有影响。二乙基砜构象的热力学参数,特别是焓,在气相和水溶液中都是确定的。计算了二乙基砜在水中的平均能。结果表明,虽然结晶二乙基砜在水中的溶解是一个吸热过程,但二乙基砜分子的水合作用是伴随着热量的释放而发生的。用密度泛函理论计算的二乙基砜的溶解热与实验数据吻合较好。
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来源期刊
CiteScore
1.40
自引率
44.40%
发文量
83
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