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水与香精油混合物的分子结构、电子特性、反应性(ELF、LOL 和 Fukui)和 NCI-RDG 研究。

Molecular Structure, Electronic Properties, Reactivity (ELF, LOL, and Fukui), and NCI-RDG Studies of the Binary Mixture of Water and Essential Oil of .

机构信息

Vocational School of Food, Agriculture and Livestock, University of Bingöl, Bingöl 12000, Turkey.

School of Non-Ferrous Metals and Materials Science, Siberian Federal University, Pr. Svobodny 79, 660041 Krasnoyarsk, Russia.

出版信息

Molecules. 2023 Mar 16;28(6):2684. doi: 10.3390/molecules28062684.

Abstract

Essential oils are volatile oil-like liquids with a characteristic strong smell and taste. They are formed in plants and are then extracted. Essential oils have extremely strong physiological and pharmacological properties, which are used in the medicine, cosmetics, and food industries. In this study, the molecules caryophyllene oxide, -pinene, 1,8-cineol, α-cubebene, and β-caryophyllene, which are the molecules with the highest contents in the essential oil of the plant mentioned in the title, were selected and theoretical calculations describing their interactions with water were performed. Because oil-water mixtures are very important in biology and industry and are ubiquitous in nature, quantum chemical calculations for binary mixtures of water with caryophyllene oxide, β-pinene, 1,8-cineol, α-cubebene, and β-caryophyllene were performed using the density functional theory (DFT)/B3LYP method with a basis of 6-31 G (d, p). Molecular structures, HOMO-LUMO energies, electronic properties, reactivity (ELF, LOL, and Fukui), and NCI-RDG and molecular electrostatic potential (MEP) on surfaces of the main components of Desf. essential oil were calculated and described.

摘要

精油是具有强烈气味和味道特征的挥发性油状液体。它们在植物中形成,然后被提取出来。精油具有极强的生理和药理特性,被广泛应用于医药、化妆品和食品行业。在本研究中,选择了植物精油中含量最高的分子石竹烯氧化物、β-蒎烯、1,8-桉叶素、α-古巴烯和β-石竹烯,并对其与水的相互作用进行了理论计算。由于油水混合物在生物学和工业中非常重要,并且在自然界中无处不在,因此使用密度泛函理论(DFT)/ B3LYP 方法和 6-31 G(d,p)基对水与石竹烯氧化物、β-蒎烯、1,8-桉叶素、α-古巴烯和β-石竹烯的二元混合物进行了量子化学计算。计算和描述了 Desf.精油主要成分的分子结构、HOMO-LUMO 能、电子性质、反应性(ELF、LOL 和 Fukui)、NCI-RDG 和表面分子静电势(MEP)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3334/10056484/432cb3ca9d54/molecules-28-02684-g001a.jpg

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