苯甲酰硫脲-啉和哌啶衍生物抗真菌活性的DFT研究和量子化学计算

R. K. Dongare, Shaukatali N. Inamdar, R. Tigote
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引用次数: 0

摘要

本文报道了与吗啉和哌啶连接的苯甲酰基硫脲衍生物的密度泛函研究,以评估其抗真菌活性。采用B3LYP方法,以6-31G(d,p)为基集,用DFT对BTP 1-3和BTM 4-6共6个化合物进行了优化。研究了分子的几何结构、键长、键角、原子电荷和HOMO-LUMO能隙。将结构参数与实验结果进行了比较,并详细探讨了结构与抗真菌活性的关系。使用化合物的所有量子化学参数讨论了DFT的计算结果。前言:报道了与吗啉和哌啶连接的苯甲酰基硫脲衍生物具有良好的抗真菌活性。目的:研究与吗啉和哌啶连接的苯甲酰基硫脲衍生物的量子化学计算与抗真菌活性之间的相关性。方法:利用6-31G(d,p)基集,采用B3LYP方法,用DFT进行优化。结果:与吗啉和哌啶连接的苯甲酰基硫脲衍生物的量子化学计算与抗真菌活性之间存在良好的相关性。结论:对吗啉和哌啶连接的苯甲酰基硫脲衍生物的抗真菌活性进行了DFT研究,其活性与量子化学参数具有良好的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DFT Studies and Quantum Chemical Calculations of Benzoyl Thiourea Derivatives Linked with Morpholine and Piperidine for the Evaluation of Antifungal Activity
Herein, we report the density functional study of benzoyl thiourea derivatives linked to morpholine and piperidine to evaluate their antifungal activity. Overall six compounds BTP 1-3 and BTM 4-6 were optimized with DFT using the B3LYP method with 6-31G(d,p) basis set. The molecular geometry, bond lengths, bond angles, atomic charges and HOMO-LUMO energy gap have been investigated. The structural parameters have been compared with the reported experimental results and structure- antifungal activity relationship is explored in details. The calculated results from DFT were discussed using all Quantum chemical parameters of the compounds. Introduction: Benzoyl thiourea derivatives linked with morpholine and piperidine were reported to have good antifungal activity. Objective: To find the correlations between the quantum chemical calculations and the antifungal activity for the benzoyl thiourea derivatives linked with morpholine and piperidine. Method: Optimization was carried out with DFT using B3LYP method utilizing 6-31G(d,p) basis set. Results: A good correlation between the quantum chemical calculations and the antifungal activity for the benzoyl thiourea derivatives linked with morpholine and piperidine was found. Conclusion: The DFT study of benzoyl thiourea derivatives linked to morpholine and piperidine was evaluated for their antifungal activity and it showed good correlations of activity with the quantum chemical parameters.
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