First-principles Calculation of Cumene: Molecular Structure, Electronic Structures, Spectroscopic Analysis, and Thermodynamic Properties

Abhishek Rana Magar, Rabin Ghimire, Bishwo Basnet, Prakash Man Shrestha, Suresh Prasad Gupta, Krishna Bahadur Rai
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Abstract

This study uses the DFT method for the investigation of optimized structure, electronic structures, charge analysis, FT-IR, FT-Raman spectroscopic analysis and thermodynamic properties. The optimized energy and dipole moment are 9531.775 eV and 0.3818 Debye. The bond lengths of C1-C2 and C1-H7 molecules inside the benzene ring are observed to be 1.39 Å and 1.08 Å respectively. The bond angle of C1-C2-C3 and C2-C1-C6 are found to be 120.10 Å and 119.36 Å. The HOMO-LUMO energy gap is 6.331 eV which corresponds very close to the energy gap of 6.321 eV obtained from density of states. The global parameters with ionization energy value 6.747 eV, electron affinity with 0.4152 eV, chemical potential with -3.5811 eV, electronegativity with 3.5811 eV, global hardness with 3.1659 eV, softness with 0.3148 eV-1 and electrophilicity index with 2.0253 eV are obtained. The Mulliken charges analysis indicate that most of the carbon atoms except C4 and C12 are found to carry negative charges where all of the H-atoms are found having positive charge. The molecular electrostatic potential, electrostatic potential and electron density identify different electrophilic and nucleophilic region and its reactive natures. The FT-IR spectroscopy shows strong C-H vibrations at 3186-3093 cm-1, methyl group vibration at 3091-3078 cm-1 and the ring vibrations at 1641-1482 cm-1. The heat capacity at constant volume and at constant pressure, internal energy, enthalpy, entropy increase with increasing temperature. However, Gibb’s free energy shows opposite nature providing very important insights according to the change in temperature.
鲁米尼的第一原理计算:分子结构、电子结构、光谱分析和热力学性质
本研究采用 DFT 方法对优化结构、电子结构、电荷分析、傅立叶变换红外光谱、傅立叶变换拉曼光谱分析和热力学性质进行了研究。优化后的能量和偶极矩分别为 9531.775 eV 和 0.3818 Debye。苯环内 C1-C2 和 C1-H7 分子的键长分别为 1.39 Å 和 1.08 Å。C1-C2-C3 和 C2-C1-C6 的键角分别为 120.10 Å 和 119.36 Å。HOMO-LUMO 能隙为 6.331 eV,与从状态密度中得到的能隙 6.321 eV 非常接近。全局参数包括电离能值 6.747 eV、电子亲和力 0.4152 eV、化学势 -3.5811 eV、电负性 3.5811 eV、全局硬度 3.1659 eV、软度 0.3148 eV-1 和亲电指数 2.0253 eV。穆利肯电荷分析表明,除 C4 和 C12 外,大多数碳原子都带有负电荷,而所有 H 原子都带有正电荷。分子静电位、静电位和电子密度确定了不同的亲电和亲核区域及其反应性质。傅立叶变换红外光谱显示,在 3186-3093 厘米-1 处有强烈的 C-H 振动,在 3091-3078 厘米-1 处有甲基基团振动,在 1641-1482 厘米-1 处有环振动。恒定体积和恒定压力下的热容量、内能、焓和熵随着温度的升高而增加。然而,吉布斯自由能却显示出相反的性质,根据温度的变化提供了非常重要的启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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