Department of Physics, A.A. Government Arts College, Musiri 621 201, TN, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2013 Dec;116:170-82. doi: 10.1016/j.saa.2013.06.098. Epub 2013 Jul 24.
In this work, a joint experimental (FTIR and FT-Raman) and theoretical (DFT and ab initio) study on the structure and the vibrations of 4-Chloro-3,5-Xylenol (CXL) are compared and analyzed. CXL is a chlorinated phenolic antiseptic which is a bactericide against most gram-positive bacteria. The first hyperpolarizability (β0) of this novel molecular system and related non-linear properties of CXL are calculated using HF/6-311++G(d,p) method on the finite-field approach. The energy and oscillator strength calculated using absorption spectra (UV-Vis spectrum), this spectral analysis confirms the charge transfer of the molecule. The theoretical (13)C nuclear magnetic resonance (NMR) chemical shifts of the molecule were calculated by Gauge Including Atomic Orbital (GIAO) method, to analyze the molecular environment as well as the delocalization activities of electron clouds. The directly calculated ionization potential (IP), electron affinity (EA), electronegativity (χ), chemical hardness (η), first electron excitation energy (τ) and electrophilicity index (ω) as well as local reactivity (S) analyzed using HOMO and LUMO energies; the energy band gap are also determined. NBO analysis shows that charge in electron density(ED) in the σ() and π() antibonding orbitals and E((2)) energies confirms the occurrence of ICT (Intramolecular Charge Transfer) within the molecule. Inter molecular hydrogen bonds exist between -OH group, give the evidence for the formation of dimer entities in the title molecule. The influences of chlorine atom, hydroxyl group and methyl group on the geometry of benzene and its normal modes of vibrations (monomer and dimer of CXL) have also been discussed. Finally the calculated results were applied to simulate Infrared and Raman spectra of the title molecule which show good agreement with observed spectra.
本工作通过实验(FTIR 和 FT-Raman)和理论(DFT 和从头算)研究对比和分析了 4-氯-3,5-二甲苯酚(CXL)的结构和振动。CXL 是一种氯化酚类防腐剂,可作为大多数革兰氏阳性菌的杀菌剂。采用有限场方法在 HF/6-311++G(d,p)水平上计算了该新型分子体系的第一超极化率(β0)和相关非线性性质。使用吸收光谱(UV-Vis 光谱)计算了能量和振子强度,该光谱分析证实了分子的电荷转移。采用 Gauge Including Atomic Orbital (GIAO)方法计算了分子的理论 (13)C 核磁共振(NMR)化学位移,以分析分子环境以及电子云的离域活性。直接计算的电离势(IP)、电子亲合势(EA)、电负性(χ)、化学硬度(η)、第一电子激发能(τ)和亲电性指数(ω)以及使用 HOMO 和 LUMO 能量分析的局部反应性(S);还确定了能带隙。NBO 分析表明,σ()和π()反键轨道和 E((2))能量中的电子密度(ED)中的电荷证实了分子内 ICT(分子内电荷转移)的发生。-OH 基团之间存在分子间氢键,为标题分子中二聚体实体的形成提供了证据。还讨论了氯原子、羟基和甲基对苯几何形状及其振动模式(CXL 的单体和二聚体)的影响。最后,将计算结果应用于模拟标题分子的红外和拉曼光谱,与观察到的光谱吻合良好。