Synthesis, crystal structure, quantum chemical computation and molecular docking analysis of 1-(4(tert-butyl)-4-methoxy-[1,1-biphenyl]-4-yl) ethenone

IF 2.2 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Neha Kumari, Archana Akaram Yadav, Sandeep Ashok Sankpal, Saminathan Murugavel, Duraiswamy Lakshmanan, Rajni Kant
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Abstract

The synthesis of 1-(4(tert-butyl)-4-methoxy-[1,1-biphenyl]-4-yl) ethenone (4TBMBE) has been realized in excellent yield by using 4-tert-butyl phenylboronic acid and 1-bromonitrobenzene as the reactants. The single crystals were obtained by solvent-loss technique and its characterization was carried out using the spectral and X-ray diffraction methods. The molecule crystallizes in the monoclinic crystal system with space group (P21/c). There exists one C–H…O intramolecular and an intermolecular C–H···π interaction, besides one π···π (Cg···Cg) interaction responsible for stabilizing the unit cell molecular packing. The density functional theory has been employed to optimize the structure and to carry out the HOMO/LUMO analysis, computation of reactivity parameters, molecular electrostatic potential map and Mulliken population analysis. The Hirshfeld surface analysis probes the existence of various interactions in the crystal structure. Crystal voids analysis confirmed the absence of any significant cavity within the crystal packing. The relative contribution for each contact has been analyzed using the 2D fingerprint plots and their favourability has been validated by the enrichment ratio. The 3D topology of molecular packing has been visualized using energy framework analysis and the nature of molecular interactions existing within the structure has been ascertained using NCI-RDG analysis. The molecular docking investigations have been performed to study the anti-inflammatory action of 4TBMBE against the p38 MAP kinase inhibitor.

Abstract Image

Abstract Image

1-(4(叔丁基)-4-甲氧基-[1,1-联苯]-4-基)乙烯酮的合成、晶体结构、量子化学计算和分子对接分析
以 4-叔丁基苯硼酸和 1-溴硝基苯为反应物,合成了 1-(4(叔丁基)-4-甲氧基-[1,1-联苯]-4-基) 乙酮 (4TBMBE),收率极高。通过溶剂流失技术获得了单晶体,并使用光谱和 X 射线衍射方法对其进行了表征。该分子在单斜晶系中结晶,空间群为 (P21/c)。分子内存在一个 C-H...O,分子间存在一个 C-H---π 相互作用,此外还有一个 π---π (Cg---Cg) 相互作用,负责稳定单胞分子堆积。该化合物采用密度泛函理论优化结构,并进行了 HOMO/LUMO 分析、反应性参数计算、分子静电位图和 Mulliken 群体分析。Hirshfeld 表面分析探测了晶体结构中存在的各种相互作用。晶体空隙分析证实了晶体结构中不存在任何明显的空隙。利用二维指纹图谱分析了每种接触的相对贡献,并通过富集比验证了它们的有利性。利用能量框架分析对分子填料的三维拓扑结构进行了可视化,并利用 NCI-RDG 分析确定了结构中存在的分子相互作用的性质。为研究 4TBMBE 对 p38 MAP 激酶抑制剂的抗炎作用,进行了分子对接研究。
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来源期刊
CiteScore
4.40
自引率
8.30%
发文量
230
审稿时长
5.6 months
期刊介绍: JICS is an international journal covering general fields of chemistry. JICS welcomes high quality original papers in English dealing with experimental, theoretical and applied research related to all branches of chemistry. These include the fields of analytical, inorganic, organic and physical chemistry as well as the chemical biology area. Review articles discussing specific areas of chemistry of current chemical or biological importance are also published. JICS ensures visibility of your research results to a worldwide audience in science. You are kindly invited to submit your manuscript to the Editor-in-Chief or Regional Editor. All contributions in the form of original papers or short communications will be peer reviewed and published free of charge after acceptance.
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