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首页> 外文期刊>Journal of Molecular Structure >Molecular structure, spectroscopic, Fukui function, RDG, anti-microbial and molecular docking analysis of higher concentration star anise content compound methyl 4-methoxybenzoate-DFT study
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Molecular structure, spectroscopic, Fukui function, RDG, anti-microbial and molecular docking analysis of higher concentration star anise content compound methyl 4-methoxybenzoate-DFT study

机译:分子结构,光谱,福井函数,RDG,抗微生物和抗微生物和分子对接分析高浓度的八甲氧化合物含量化合物甲基4-甲氧基苯甲酸甲酯-DFT研究

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The work aims to examine Methyl 4-methoxybenzoate (M4MB) molecule by experimental and theoretical spectroscopic investigations and to identify its structural and biological properties. The experimental FT-IR (450-4000 cm(-1)) and FT-Raman (50-4000cm(-1)) spectra of the M4MB molecule have been recorded in the solid phase. The UV-Vis spectrum of the M4MB molecule has been recorded in the wavelength range 200-800 nm, and the electronic properties are computed with the TD-DFT method. The H-1 and C-13 NMR spectra of the title compound have been recorded in deuterated methanol (MeOD) and compared with computed data obtained by using gage including atomic orbital (GIAO) method. Natural bond orbital (NBO) analysis interprets the intramolecular contacts of the M4MB molecule. Fukui function and MEP analysis predict the reactive sites of electrophilic and nucleophilic attack for the M4MB molecule. Based on electron density, weak interactions of the molecule are identified with the aid of RDG analysis. The interpreted HOMO and LUMO energies indicate the chemical stability of the molecules. Docking studies have been performed for title molecule using the molecular docking software. In-vitro analysis has been done with fungal and bacterial pathogens, Aspergillus niger and E.Coli. (C) 2021 Elsevier B.V. All rights reserved.
机译:本工作旨在通过实验和理论光谱研究来检测4-甲氧基苯甲酸甲酯(M4MB)分子,并确定其结构和生物学特性。在固相中记录了M4MB分子的实验FT-IR(450-4000cm(-1))和FT-Raman(50-4000cm(-1))光谱。记录了M4MB分子在200-800nm波长范围内的紫外-可见光谱,并用TD-DFT方法计算了其电子性质。在氘化甲醇(MeOD)中记录了标题化合物的H-1和C-13 NMR谱,并与使用包括原子轨道(GIAO)在内的gage方法获得的计算数据进行了比较。自然键轨道(NBO)分析解释了M4MB分子的分子内接触。Fukui函数和MEP分析预测M4MB分子亲电和亲核攻击的反应位点。根据电子密度,借助RDG分析,确定了分子间的弱相互作用。解释的HOMO和LUMO能量表明了分子的化学稳定性。使用分子对接软件对标题分子进行了对接研究。对真菌和细菌病原体、黑曲霉和大肠杆菌进行了体外分析。(c)2021爱思唯尔B.V.保留所有权利。

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