用DFT计算了大麻环酚(CBL)和大麻酚(CBG)的热物理、HOMO、LUMO、振动光谱和紫外可见光谱

Nuruzzaman Sarker, A. Kumer, Mohammad Jahidul Islam, Sunanda Paul
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引用次数: 6

摘要

大麻环酚,也被称为CBL,是大麻植物中最不为人所知和研究的大麻素异构体之一,它是大麻植物中发现的不同大麻素的前体,具有广泛的药用价值。在这项工作中,CBL的热物理性质,如,自由能,熵,偶极矩,结合能,核能,电子能量,和形成热估计使用密度功能理论开发用于制药。此外,还评价了其化学反应性,包括最高已占据分子轨道(HOMO)、最低未占据分子轨道(LUMO)、HOMO-LUMO间隙、电离势、电负性、硬度、柔软度和电子亲和性。结果表明,CBL和CBG的HOMO等分别为-8.98和-8.53,LUMO等分别为0.19、-0.31,HOMO -LUMO间隙分别为-9.17和-8.22 eV。通过振动谱和电子谱的模拟进行了鉴定和表征。这些研究为进一步用于任何化学和制药目的提供了适当和可预测的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A computational study of thermophysical, HOMO, LUMO, vibrational spectrum and UV-visible spectrum of cannabicyclol (CBL), and cannabigerol (CBG) using DFT
Cannabicyclol, also called CBL, is one of the least known and studied isomer of cannabinoids in the cannabis plant, and it is the precursor of the different cannabinoids found in marijuana plant having with widespread medicinal use. In this work, the thermophysical properties of CBL such as, free energy, entropy, dipole moment, binding energy, nuclear energy, electronics energy, and heat of formation were estimated using density functional theory for developing use as pharmaceutical pursues. In addition, the chemical reactivity properties including highest occupied molecular orbital (HOMO), lowest unoccupied molecular orbital (LUMO), HOMO-LUMO gap, ionization potential, electronegativity, hardness, softness, and electron affinity were evaluated. It was found that, the magnitude of HOMO was -8.98 and -8.53, LUMO was 0.19, -0.31 and HOMO –LUMO gap was -9.17 and -8.22 eV of CBL and CBG, respectively. The vibrational spectrum and electronics spectrum were simulated for identification and characterization. These studies provided a proper and predictable data for further use in any chemical and pharmaceutical purpose.
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