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首页> 外文期刊>International Journal of Quantum Chemistry >Geometric and electronic structure of zwitterionic push-pull polyenes for nonlinear optics
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Geometric and electronic structure of zwitterionic push-pull polyenes for nonlinear optics

机译:用于非线性光学的两性离子推挽多烯的几何和电子结构

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We present a study of the chemical structure of highly polar push-pull conjugated molecules in interest for nonlinear optics, in which purely inductive ammonium/borate substituents, R_3N~+/BR_3~-, are attached to a trans-polyene chain of variable length either directly or via phenyl groups. The performance of ab initio Hartree-Fock and Moller-Plesset second order (MP2) methods is compared with that of the hybrid density functional theory (DFT) and semiempirical (AM1) Hartree-Fock and configuration interaction methods. Taking into account electron correlation at the MP2 level is important to obtain reliable molecular geometries; the hybrid DFT (BH and HLYP functional) results are found to be in close agreement with the MP2 results. Some geometries obtained with the semiempirical methods are in qualitative disagreement with the MP2/6-31G results. A chemical rationalization of the optimized structures and the nature of the substituent effect is proposed.
机译:我们对非线性光学感兴趣的高极性推挽共轭分子的化学结构进行了研究,其中纯感应铵/硼酸酯取代基R_3N〜+ / BR_3〜-连接到可变长度的反多烯链上直接或通过苯基。将从头算起的Hartree-Fock和Moller-Plesset二阶(MP2)方法的性能与混合密度泛函理论(DFT)和半经验(AM1)Hartree-Fock和配置相互作用方法的性能进行了比较。考虑到MP2级别的电子相关性对于获得可靠的分子几何结构很重要。混合DFT(具有BH和HLYP功能)结果与MP2结果非常吻合。用半经验方法获得的某些几何形状在质量上与MP2 / 6-31G结果不一致。提出了优化结构的化学合理性和取代基效应的性质。

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