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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Ab Initio and DFT Study of the Geometric Structures and Static Dipole (Hyper)polarizabilities of Aromatic Anions
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Ab Initio and DFT Study of the Geometric Structures and Static Dipole (Hyper)polarizabilities of Aromatic Anions

机译:芳香阴离子的几何结构和静态偶极(超)极化率的从头算和DFT研究

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The geometries and the static dipole (hyper)polarizabilities (alpha,beta,gamma) of a series of aromatic anions were investigated at the ab initio (HF,MP2,and MP4) and density functional theory DFT (B3LYP) levels of theory.The anions chosen for the present study are the benzenethiolate (Ph-S~-),benzenecarboxylate (Ph- CO_2~-),benzenesulfinate (Ph-SO_2~-),benzenesulfonate (Ph-SO_3~-),and 1,3-benzenedicarboxylate (1,3-Ph- (CO_2)_2~(2-)).For benzenethiolate anion,additional alpha,beta,and gamma calculations were performed at the coupled cluster CCSD level with MP2 optimized geometries.The standard diffuse and polarized 6-31+G(d,p) basis set was employed in conjunction to the ab initio and DFT methods.Additional HF calculations were performed with the 6-31 l++G(3d,3p) basis set for all the anions.The correlated electric properties were evaluated numerically within the formalism of finite field.The optimized geometries were analyzed in terms of the few reports about the phenolate and sulfonate ions.The results show that electron correlation effects on the polarizabilities are very important in all the anion series.Was found that Ph-SO_2~- is highly polarizable in terms of alpha and beta,and the Ph-S~- is the highest second hyperpolarizable in the series.The results of a were rationalized in terms of the analysis of the polarization of charge based in Mulliken atomic population and the structural features of the optimized geometries of anions,whereas the large differences in the beta and gamma values in the series were respectively interpreted in terms of the bond length alternation BLA and the separation of charge in the aromatic ring by effects of the substitution.These results allowed us to suggest the benzenesulfinate and benzenethiolate anions as promising candidates that should be incorporated in ionic materials for second and third-order nonlinear optical devices.
机译:从头算(HF,MP2和MP4)和密度泛函理论DFT(B3LYP)的理论水平研究了一系列芳香族阴离子的几何形状和静态偶极(超)极化率(α,β,γ)。本研究中选择的阴离子为苯硫醇盐(Ph-S〜-),苯羧酸盐(Ph- CO_2〜-),苯磺酸盐(Ph-SO_2〜-),苯磺酸盐(Ph-SO_3〜-)和1,3-苯二甲酸根(1,3-Ph-(CO_2)_2〜(2-))。对于苯硫酸根阴离子,在MPSD优化的几何结构上,在耦合簇CCSD水平上进行了附加的α,β和γ计算。标准的扩散和极化6-从头算和DFT方法结合使用31 + G(d,p)基础集。对所有阴离子,使用6-31 l ++ G(3d,3p)基础集进行额外的HF计算。在有限域的形式上对电性能进行了数值评估。根据有关酚盐和磺胺盐的一些报道对优化的几何形状进行了分析结果表明,在所有阴离子系列中,电子相关性对极化率的影响都非常重要。发现Ph-SO_2〜-在α和β方面具有高度极化性,而Ph-S〜-最高通过分析基于Mulliken原子群的电荷极化和阴离子优化几何结构的结构特征,使a的结果合理化,而其中的beta和γ值差异很大该系列分别通过键长交替BLA和通过取代作用在芳香环中的电荷分离进行了解释,这些结果使我们建议将苯磺酸盐和苯硫酸盐阴离子作为有前景的候选物,应将其引入离子材料中进行第二次和三阶非线性光学器件。

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