Corongiu Giorgina
Dipartimento di Scienze Chimiche ed Ambientali, Università dell'Insubria, Via Lucini 3, I-22100 Como, Italy.
J Phys Chem A. 2007 Dec 27;111(51):13611-22. doi: 10.1021/jp0748056. Epub 2007 Dec 5.
The recently proposed Hartree-Fock-Heitler-London, HF-HL, method (Corongiu, G. J. Phys. Chem. A 2006, 110, 11584) previously tested for single bond molecules is validated by potential energy computations for open and closed shells, single and multiple bonds, in ground and excited states of homopolar diatomic molecules of the first and second period. The simple HF-HL function, including the configurations for 2s/2p near degeneracy and avoiding state crossing, yields correct dissociation products, qualitatively correct binding, and accounts for non-dynamical correlation. Addition of ionic structures improves the ab initio HF-HL function and yields about 95% of the experimental binding energies on average. Computed excitation energies are also in agreement with laboratory values as verified for the 3 Pi u and 3 Zeta g- excited states of the C2 molecule. Computation of the remaining dynamical correlation using a semiempirical functional yields binding energies with an average deviation of 1.5 kcal/mol from laboratory values, and total energies with an average deviation of 0.7 kcal/mol from exact nonrelativistic dissociation energies.
最近提出的哈特里-福克-海特勒-伦敦(HF-HL)方法(科龙吉乌,G.《物理化学杂志A》2006年,第110卷,第11584页)先前已针对单键分子进行了测试,现通过对第一和第二周期同核双原子分子基态和激发态中的开壳层与闭壳层、单键与多键进行势能计算来验证。简单的HF-HL函数,包括2s/2p近简并的构型并避免态交叉,能产生正确的解离产物、定性正确的键合,并考虑了非动力学相关性。添加离子结构改进了从头算HF-HL函数,平均能给出约95%的实验结合能。计算得到的激发能也与实验室值相符,如对C2分子的3Πu和3ζg-激发态所验证的那样。使用半经验泛函计算剩余的动力学相关性,得到的结合能与实验室值的平均偏差为1.5千卡/摩尔,总能量与精确的非相对论解离能的平均偏差为0.7千卡/摩尔。