首页> 外文期刊>The Journal of Chemical Physics >Accurate ab initio predictions of ionization energies of hydrocarbon radicals: CH2, CH3, C2H, C2H3, C2H5, C3H3, and C3H5 - art. no. 224310
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Accurate ab initio predictions of ionization energies of hydrocarbon radicals: CH2, CH3, C2H, C2H3, C2H5, C3H3, and C3H5 - art. no. 224310

机译:烃自由基:CH2,CH3,C2H,C2H3,C2H5,C3H3和C3H5的电离能的精确的从头算。没有。 224310

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摘要

The ionization energies for methylene (CH2), methyl (CH3), ethynyl (C2H), vinyl (C2H3), ethyl (C2H5), propargyl (C3H3), and allyl (C3H5) radicals have been calculated by the wave-function-based ab initio CCSD(T)/CBS approach, which involves the approximation to the complete basis set (CBS) limit at the coupled-cluster level with single and double excitations plus a quasiperturbative triple excitation [CCSD(T)]. When it is appropriate, the zero-point vibrational energy correction, the core-valence electronic correction, the scalar relativistic effect correction, the diagonal Born-Oppenheimer correction, and the high-order correlation correction have also been made in these calculations. The comparison between the computed ionization energy (IE) values and the highly precise experimental IE values determined in previous pulsed field ionization-photoelectron (PFI-PE) studies indicates that the CCSD(T)/CBS method is capable of providing accurate IE predictions for these hydrocarbon radicals achieving error limits well within +/- 10 meV. The benchmarking of the CCSD(T)/CBS IE predictions by the PFI-PE experimental results also lends strong support for the conclusion that the CCSD(T)/CBS approach with high-level energy corrections can serve as a valuable alternative for reliable IE determination of radicals, particularly for those radicals with very unfavorable Franck-Condon factors for photoionization transitions near their ionization thresholds.
机译:已通过基于波函数的方法计算了亚甲基(CH2),甲基(CH3),乙炔基(C2H),乙烯基(C2H3),乙基(C2H5),炔丙基(C3H3)和烯丙基(C3H5)的电离能从头开始,采用CCSD(T)/ CBS方法,该方法包括在单脉冲和双激发以及准微扰三重激发[CCSD(T)]的耦合簇水平上逼近完整基集(CBS)极限。在适当的时候,在这些计算中还进行了零点振动能量校正,核心价电子校正,标量相对论效应校正,对角Born-Oppenheimer校正和高阶相关校正。计算的电离能(IE)值与先前的脉冲场电离-光电子(PFI-PE)研究中确定的高精度实验IE值之间的比较表明,CCSD(T)/ CBS方法能够为以下情况提供准确的IE预测:这些烃自由基的误差限制在+/- 10 meV之内。 PFI-PE实验结果对CCSD(T)/ CBS IE预测的基准测试也为以下结论提供了强有力的支持:采用高级能量校正的CCSD(T)/ CBS方法可以作为可靠IE的宝贵替代品确定自由基,特别是对于那些具有非常不利的Franck-Condon因子的自由基,这些自由基在接近其电离阈值时会发生光离子化跃迁。

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