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卤素(F、Cl)取代的甲酸二聚体的结构与非线性光学性质

Structure and NLO properties of halogen (F, Cl) substituted formic acid dimers.

作者信息

Umadevi P, Senthilkumar L, Gayathri M, Kolandaivel P

机构信息

Department of Physics, Bharathiar University, Coimbatore 641 046, Tamil Nadu, India.

Department of Physics, Bharathiar University, Coimbatore 641 046, Tamil Nadu, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2014 Nov 11;132:821-32. doi: 10.1016/j.saa.2014.05.080. Epub 2014 Jun 11.

Abstract

In this work, using ab initio and density functional theory (DFT) methods halogen substituted formic acid (FA) dimer is studied. The dimer stability is due to the hydrogen bonds, either conventional (OH⋯O, OH⋯F, OH⋯Cl) or non-conventional (CH⋯O, CH⋯F, CH⋯Cl). Among all the dimers, trans-trans form is more stable than the trans-cis, and cis-cis form. Basis set extrapolated counterpoise corrected interaction energy results for the FA dimer are in excellent agreement with BSSE corrected MP2 interaction energy. Symmetry Adopted Perturbation Theory (SAPT) analysis reveals that the electrostatic effect plays a dominant role in stabilization among the dimers with maximum interaction energy. Chlorine substituted FA dimer has high hyperpolarizability, which makes them excellent candidate for nonlinear optical materials (NLO). The halogen substituted formic acid dimers have higher stability and polarizability value than the unsubstituted formic acid dimer. The hyperpolarizability values depend on the geometrical structures of halogenated formic acid dimers than the type of hydrogen bonds. The small excitation energy and HOMO-LUMO gap in the halogenated formic acid dimer has led to the strong nonlinear optical response. The depolarization ratio and Rayleigh scattering increases in formic acid dimer after the halogen atom substitution.

摘要

在这项工作中,使用从头算和密度泛函理论(DFT)方法研究了卤素取代的甲酸(FA)二聚体。二聚体的稳定性归因于氢键,包括传统的(OH⋯O、OH⋯F、OH⋯Cl)和非常规的(CH⋯O、CH⋯F、CH⋯Cl)。在所有二聚体中,反-反形式比反-顺式和顺-顺式更稳定。甲酸二聚体的基组外推对消校正相互作用能结果与BSSE校正的MP2相互作用能非常吻合。对称采用微扰理论(SAPT)分析表明,在具有最大相互作用能的二聚体中,静电效应在稳定化中起主导作用。氯取代的甲酸二聚体具有高极化率,这使其成为非线性光学材料(NLO)的极佳候选者。卤素取代的甲酸二聚体比未取代的甲酸二聚体具有更高的稳定性和极化率值。极化率值取决于卤代甲酸二聚体的几何结构,而不是氢键的类型。卤代甲酸二聚体中较小的激发能和HOMO-LUMO能隙导致了强烈的非线性光学响应。卤素原子取代后,甲酸二聚体的去极化率和瑞利散射增加。

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