首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Ab initio MO study on the S-1 <- S-0 origin transition energies of polychlorodibenzofurans (PCDFs)
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Ab initio MO study on the S-1 <- S-0 origin transition energies of polychlorodibenzofurans (PCDFs)

机译:从头算MO对聚氯二苯并呋喃(PCDFs)S-1 <-S-0起始跃迁能的研究

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The geometries and energies for the So and S, states of dibenzoftiran (DF) and all 135 PCDFs were obtained using Hartree-Fock (HF) and CI-Singles (CIS) methods. The transition energies determined from HF and CIS energies were corrected for electron correlation. If the electron correlation energies for the So and the S, state are calculated using a second-order Moller-Plesset perturbation (MP2) and a perturbative correction to CIS (termed CIS(D)) method, the S-1 <- S-0 0-0 transition energies are given with an error of 15.4-22.6%. Electron correlation corrections to the transition energies were determined from a selected set of experimental transition energies on the assumption of the following additivity rule: the electron correlation energy of each state can be partitioned into contributions from the parent molecule and substituent chlormes. The transition energies after correction for electron correlation are in good agreement with available experimental data with an error of 0.2-3.5%. The validity of the additivity rule with respect to electron correlation energy is discussed in relation to the geometry of the molecule. The findings show that the additivity rule holds within an error of 0.4%. Vertical ionization potentials, which are useful in REMPI spectral studies, were calculated using Koopmans' theorem. The results confirmed that the S-1 <- S-0 origin transition energy is inversely proportional to the number of chlorine atoms tic, but the ionization potential is directly proportional to n(Cl). (c) 2006 Elsevier B.V. All rights reserved.
机译:使用Hartree-Fock(HF)和CI-Singles(CIS)方法获得了So和S的几何形状和能量,二苯并ftiran(DF)和所有135种PCDF的态。根据电子相关性校正了由HF和CIS能量确定的跃迁能量。如果使用二阶Moller-Plesset扰动(MP2)和对CIS的扰动校正(称为CIS(D))方法计算出So和S状态的电子相关能,则S-1 <-S- 0 0-0的过渡能量给定,误差为15.4-22.6%。在以下加和规则的假设下,从一组选定的实验跃迁能中确定了跃迁能的电子相关校正:每种状态的电子相关能可以分为母体分子和取代基氯离子。校正电子相关性后的跃迁能与可用的实验数据高度吻合,误差为0.2-3.5%。关于分子的几何形状,讨论了关于电子相关能的加性规则的有效性。研究结果表明,可加性规则的误差在0.4%以内。使用Koopmans定理计算出在REMPI光谱研究中有用的垂直电离势。结果证实,S-1 <-S-0原始跃迁能与氯原子tic的数量成反比,但电离势与n(Cl)直接成正比。 (c)2006 Elsevier B.V.保留所有权利。

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