用计算化学方法研究有机溶剂分子间相互作用的能量和结构

Nuraisah Malau, A. Nugraha
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引用次数: 0

摘要

本研究旨在利用计算化学方法确定有机溶剂分子中发生的能量、能量差、能量与化合物之间距离的关系以及相互作用。在确定能量和发生的相互作用时,使用NWChem软件6.6版进行计算化学计算,采用DFT方法,B3LYP混合函数/基集为6-31G,计算结果使用Jmol软件进行可视化。苯的能量计算结果为-230.62447487 KJ/mol,乙醇为-154.01322923 KJ/mol,甲醇为-114.98816558 KJ/mol,己烷为-235.27001385 KJ/mol。以1:1 -384.63823964 KJ/mol、1:2 538.66009762 KJ/mol、2:1 - 615.26607558 KJ/mol的比例混合苯和乙醇。苯和甲醇的比例分别为1:1 -345.61255299 KJ/mol、2:1 - 460.60826254 KJ/mol和2:1 -576.24044425 KJ/mol,己烷和乙醇的比例分别为1:1 - 389.28477268 KJ/mol、2:1 -543.29869234 KJ/mol和2:1 -624.55723290 KJ/mol。正己烷与甲醇的混合物,比例为1:1 -350.25984691 KJ/mol, 1:2 -465.26041654 KJ/mol和2:1 -585.53373886 KJ/mol。在苯和乙醇的比例为1:2 -0.00916429 K /mol时,在苯和甲醇的比例为1:2 - 0.00745651 KJ/mol时,在己烷和乙醇的比例为2:1 -0.00397597 KJ/mol时,在己烷和甲醇的比例为1:2 - 0.01407153 KJ/mol时,能量差最大。混合物相互作用能的大小与分子间的距离没有关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study Of Energy And Structure On Intermolecular Interactions In Organic Solvents Using Computational Chemistry Method
This study aims to determine the amount of energy, the difference in energy, the relationship between the amount of energy and the distance between compounds, and the interactions that occur in organic solvent molecules using computational chemistry methods. In determining the amount of energy and interactions that occur, computational chemistry calculations are used using NWChem software version 6.6 with the DFT method with the B3LYP hybrid function/basis set 6-31G, the calculation results are visualized using Jmol software. The results of calculations with large computations of energy for benzene are -230.62447487 KJ/mol, ethanol -154.01322923 KJ/mol, methanol -114.98816558 KJ/mol, hexane are -235.27001385 KJ/mol. Mixture of benzene and ethanol in a ratio of 1 : 1 -384.63823964 KJ/mol, 1 : 2 538.66009762 KJ/mol , and 2 : 1 - 615.26607558 KJ/mol. A mixture of benzene and methanol in a ratio of 1 : 1 -345.61255299 KJ/mol, 1 : 2 - 460.60826254 KJ/mol, and 2 : 1 -576.24044425 KJ/mol, a mixture of hexane and ethanol in a ratio of 1 : 1 - 389.28477268 KJ/mol, 1 : 2 -543.29869234 KJ/mol and 2 : 1 -624.55723290 KJ/mol. A mixture of hexane and methanol at a ratio of 1 : 1 -350.25984691 KJ/mol, 1 : 2 -465.26041654 KJ/mol and 2 : 1 -585.53373886 KJ/mole. The difference in energy is the most in a mixture of benzene and ethanol in a ratio of 1 : 2 -0.00916429 K /mol, in a mixture of benzene and methanol in a ratio of 1 : 2 - 0.00745651 KJ/mol, a mixture of hexane and ethanol in a ratio of 2 : 1 -0.00397597 KJ/mol, and a mixture of hexane and methanol in a ratio of 1 : 2 - 0.01407153 KJ/mol. and there is no relationship between the magnitude of the interaction energy of the mixture with the distance between the molecules.
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