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首页> 外文期刊>Journal of Molecular Structure >Spectroscopic [FT-IR and FT-Raman] and molecular modeling (MM) study of benzene sulfonamide molecule using quantum chemical calculations
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Spectroscopic [FT-IR and FT-Raman] and molecular modeling (MM) study of benzene sulfonamide molecule using quantum chemical calculations

机译:光谱法[FT-IR和FT-Raman]和分子建模(MM)研究苯磺酰胺分子的量子化学计算

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摘要

The spectroscopic and molecular modeling (MM) study includes, FT-IR, FT-Raman and C-13 NMR and H-1 NMR spectra of the Benzene sulfonamide were recorded for the analysis. The observed experimental and theoretical frequencies (IR and Raman) were assigned according to their distinctive region. The present study of this title molecule have been carried out by hybrid computational calculations of HF and DFT (B3LYP) methods with 6-311+G(d,p) and 6-311++G(d,p) basis sets and the corresponding results are tabulated. The structural modifications of the compound due to the substitutions of NH2 and SO2 were investigated. The minimum energy conformers of the compound were studied using conformational analysis. The alternations of the vibrational pattern of the base structure related to the substitutions were analyzed. The thermodynamic parameters (such as zero-point vibrational energy, thermal energy, specific heat capacity, rotational constants, entropy, and dipole moment) of Benzene sulfonamide have been calculated. The donor acceptor interactions of the compound and the corresponding UV transitions are found out using NBO analysis. The NMR spectra were simulated by using the gauge independent atomic orbital (GIAO) method with B3LYP methods and the 6-311++G(d,p) basis set and their spectra were simulated and the chemical shifts related to TMS were compared. A quantum computational study on the electronic and optical properties absorption wavelengths, excitation energy, dipole moment and frontier molecular orbital energies, were performed by HF and DFT methods. The energy gap of the present compound was calculated related to HOMO and LUMO energies which confirm the occurring of charge transformation between the base and ligand group. Besides frontier molecular orbitals (FMO), molecular electrostatic potential (MEP) was performed. The thermodynamic properties (heat capacity, entropy, and enthalpy) of the title compound at different temperatures were calculated in gas phase and solvents (DMSO and methanol). (C) 2016 Elsevier B.V. All rights reserved.
机译:光谱和分子建模(MM)研究包括,苯磺酰胺的FT-IR,FT-Raman和C-13 NMR和H-1 NMR光谱记录用于分析。根据观察到的实验和理论频率(IR和拉曼)根据其独特区域进行分配。本标题分子的本研究是通过HF和DFT(B3LYP)方法的混合计算计算,使用6-311 + G(d,p)和6-311 ++ G(d,p)基集以及列出相应的结果。研究了由于NH 2和SO 2的取代引起的化合物的结构修饰。使用构象分析研究了化合物的最小能量构象。分析了与替代有关的基础结构的振动模式的变化。计算了苯磺酰胺的热力学参数(例如零点振动能,热能,比热容,旋转常数,熵和偶极矩)。使用NBO分析发现了化合物的供体受体相互作用和相应的UV跃迁。使用B3LYP方法,独立于轨距的原子轨道(GIAO)方法和6-311 ++ G(d,p)基集对NMR光谱进行模拟,并对它们的光谱进行模拟,并比较与TMS相关的化学位移。通过HF和DFT方法对电子和光学性质的吸收波长,激发能,偶极矩和前沿分子轨道能进行了量子计算研究。计算出与HOMO和LUMO能量有关的本发明化合物的能隙,这证实了在碱和配体基团之间发生了电荷转化。除了前沿分子轨道(FMO),还进行了分子静电势(MEP)。在气相和溶剂(DMSO和甲醇)中,计算了不同温度下标题化合物的热力学性质(热容量,熵和焓)。 (C)2016 Elsevier B.V.保留所有权利。

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