Suppr超能文献

2-甲基-4(1H)-喹诺酮单体和二聚体形式的拓扑分析及反应活性研究:一项计算研究

Topological analysis and reactivity study of monomeric and dimeric forms of 2-methyl-4(1H)-quinolone: a computational study.

作者信息

Sabud Subhechha, Bera Madhumita, Pal Jagannath

机构信息

Department of Chemistry, Midnapore City College, Kuturia, Bhadutala, Paschim Medinipur, West Bengal, 721129, India.

出版信息

J Mol Model. 2023 Nov 13;29(12):369. doi: 10.1007/s00894-023-05779-y.

Abstract

CONTEXT

Quinolone derivatives have gathered major attention largely due to their wonderful biological activities. Quinolones are a class of molecules that are derived from quinolines and also extracted from natural sources. Most of these quinolones have significant medicinal properties ranging from antiallergenic and anticancer to antimicrobial activities. Some bacteria produce several 2-alkyl-4(1H)-quinolones. In past years, a variety of methods have been reported for the synthesis of quinolone derivatives. In this present work, structural, wave functional, and electronic properties of monomeric and dimeric forms of 2-methyl-4(1H)-quinolone are investigated. From the calculated binding energies, it was found that the formation of dimers is thermodynamically favorable. The analysis of reactivity parameters confirms that the keto form is more reactive than the enol form and keto-keto dimer is more reactive than compared to all monomeric and dimeric forms of our studied compound.

METHODS

Geometry optimizations of monomers and dimers of studied molecules were carried out using the B3LYP-D3(BJ)/ma-def2-TZVPP level of theory. The highest occupied molecular orbital (HOMO) and lowest unoccupied molecular orbital (LUMO) energies were calculated using the B3LYP/def2-TZVP level of theory. All DFT calculations were done with the ORCA 5.0.3 program. The reactivity parameters such as ionization potential, electron affinity, global hardness, global softness, electronegativity, chemical potential, and electrophilicity index were calculated. The nature of intermolecular interactions within the dimers was studied using topological analysis such as atoms in molecule (AIM) and reduced density gradient (RDG) surface analyses. To visualize the electron delocalization in the dimer electron localization function (ELF) and localized orbital locator (LOL) studies were also performed. The analyses such as AIM, RDG, ELF, and LOL were carried out by the multifunctional wavefunction analysis program Multiwfn 3.8.

摘要

背景

喹诺酮衍生物因其出色的生物活性而备受关注。喹诺酮是一类从喹啉衍生而来且也可从天然来源提取的分子。这些喹诺酮中的大多数具有显著的药用特性,范围从抗过敏、抗癌到抗菌活性。一些细菌会产生几种2 - 烷基 - 4(1H)-喹诺酮。在过去几年中,已经报道了多种合成喹诺酮衍生物的方法。在本工作中,研究了2 - 甲基 - 4(1H)-喹诺酮单体和二聚体形式的结构、波函数和电子性质。从计算出的结合能发现,二聚体的形成在热力学上是有利的。反应性参数分析证实,酮式比烯醇式更具反应性,并且酮 - 酮二聚体比我们所研究化合物的所有单体和二聚体形式都更具反应性。

方法

使用B3LYP - D3(BJ)/ma - def2 - TZVPP理论水平对所研究分子的单体和二聚体进行几何优化。使用B3LYP/def2 - TZVP理论水平计算最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)能量。所有密度泛函理论(DFT)计算均使用ORCA 5.0.3程序完成。计算了诸如电离势、电子亲和能、全局硬度、全局软度、电负性、化学势和亲电性指数等反应性参数。使用拓扑分析如分子中的原子(AIM)和密度降低梯度(RDG)表面分析研究二聚体内分子间相互作用的性质。为了可视化二聚体中的电子离域,还进行了电子定位函数(ELF)和定域轨道定位器(LOL)研究。诸如AIM、RDG、ELF和LOL等分析由多功能波函数分析程序Multiwfn 3.8进行。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验