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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Unrestricted prescriptions for open-shell singlet diradicals: Using economical Ab initio and density functional theory to calculate singlet-triplet gaps and bond dissociation curves
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Unrestricted prescriptions for open-shell singlet diradicals: Using economical Ab initio and density functional theory to calculate singlet-triplet gaps and bond dissociation curves

机译:开壳单重双自由基的无限制处方:使用经济的从头算和密度泛函理论计算单重-三重态间隙和键解离曲线

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摘要

Here we present and test several computational prescriptions for calculating singlet-triplet (ST) gap energies and bond dissociation curves for open-shell singlet diradicals using economical unrestricted single reference type calculations. For ST gap energies from Slipchenko and Krylov's atom and molecule test set (C, O, Si, NH, NF, OH ~+, O _2, CH _2, and NH _2 ~ +) spin unrestricted Hartree-Fock and MP2 energies result in errors greater than 15 kcal/mol. However, spin-projected (SP) Hartree-Fock theory in combination with spin-component-scaled (SCS) or scaled-opposite-spin (SOS) second-order perturbation theory gives ST gap energies with a mean unsigned error (MUE) of less than 2 kcal/mol. Density functionals generally give poor results for unrestricted energies and only the ωB97X-D, the M06, and the M06-2X functionals provide reasonable accuracy after spin-projection with MUE values of 4.7, 4.3, and 3.0 kcal/mol, respectively, with the 6-311++G(2d,2p) basis set. We also present a new one parameter hybrid density functional, diradical-1 (DR-1), based on Adamo and Barone's modified PW exchange functional with the PW91 correlation functional. This DR-1 method gives a mean error (ME) of 0.0 kcal/mol and a MUE value of 1.3 kcal/mol for ST gap energies. As another test of unrestricted methods the bond dissociation curves for methane (CH _4) and hydrofluoric acid (H-F) were calculated with the M06-2X, DR-1, and ωB97X-D density functionals. All three of these functionals give reasonable results for the methane C-H bond but result in errors greater than 50 kcal/mol for the H-F bond dissociation. Spin-projection is found to significantly degrade bond dissociation curves past ~2.2 ?. Although unrestricted Hartree-Fock theory provides a very poor description of H-F bond dissociation, unrestricted SCS-MP2 and SOS-MP2 methods give accurate results.
机译:在这里,我们介绍并测试使用经济的非限制性单一参考类型计算来计算开壳单线态双自由基的单线态-三重态(ST)间隙能和键解离曲线的几种计算公式。对于来自Slipchenko和Krylov原子和分子测试集的ST缝隙能量(C,O,Si,NH,NF,OH〜+,O _2,CH _2和NH _2〜+),自旋不受限制的Hartree-Fock和MP2能量导致误差大于15 kcal / mol。但是,自旋投影(SP)Hartree-Fock理论与自旋分量标度(SCS)或标度对立自旋(SOS)二阶摄动理论相结合,得出的ST缝隙能量的平均无符号误差(MUE)为小于2 kcal / mol。对于无限制的能量,密度泛函通常会给出较差的结果,只有ωB97X-D,M06和M06-2X泛函自旋投影后才能提供合理的精度,其MUE值分别为4.7、4.3和3.0 kcal / mol。 6-311 ++ G(2d,2p)基础集我们还提出了一种新的单参数混合密度泛函diradical-1(DR-1),它基于Adamo和Barone的改良PW交换函数以及PW91相关函数。对于ST间隙能量,此DR-1方法给出的平均误差(ME)为0.0 kcal / mol,MUE值为1.3 kcal / mol。作为无限制方法的另一项测试,使用M06-2X,DR-1和ωB97X-D密度泛函计算了甲烷(CH _4)和氢氟酸(H-F)的键解离曲线。所有这三个官能团均能为甲烷C-H键提供合理的结果,但导致H-F键解离的误差大于50 kcal / mol。自旋投影被发现可显着降低键解离曲线,直至约2.2?。尽管不受限制的Hartree-Fock理论不能很好地描述H-F键的解离,但不受限制的SCS-MP2和SOS-MP2方法可提供准确的结果。

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