MOLECULAR STRUCTURE AND ELECTRONIC PROPERTIES OF EUGENOL AND ITS ANALOGUES USING DFT

M. Maahury
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引用次数: 0

Abstract

Eugenol is the active molecule naturally found in clove oil. The calculations have been done for the eugenol and its derivatives computationally. This computational calculation aims to obtain a stable structure and electronic properties of eugenol, methyl eugenol, and acetyl eugenol. The computational calculation used DFT for geometry optimization in the gas phase using B3LYP functional and 6-31G(d) as the basis set. The optimized structure of eugenol and its derivatives is not planar. The presence of methoxy replacing hydroxy increases the bond length and decreases the bond angle and the dihedral. The electronic properties such as atomic charge and density of HOMO-LUMO show the difference between the three molecules.
用DFT研究丁香酚及其类似物的分子结构和电子性质
Eugenol是丁香油中天然存在的活性分子。对丁香酚及其衍生物进行了计算。该计算旨在获得丁香酚、甲基丁香酚和乙酰丁香酚的稳定结构和电子性质。计算使用DFT进行气相几何优化,使用B3LYP函数和6-31G(d)作为基集。丁香酚及其衍生物的优化结构不是平面的。甲氧基取代羟基的存在增加了键长,降低了键角和二面角。HOMO-LUMO的原子电荷和密度等电子性质表明了这三种分子之间的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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