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含芯电子相关能修正的G2理论─G2(ful) 被引量:6
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作者 苏克和 王育彬 文振翼 《物理化学学报》 SCIE CAS CSCD 北大核心 1998年第9期856-864,共9页
A general method in considering the core electromc correlation energies has been proposed and introduced into the standard Gaussian-2 (G2)[7] theory hy small post-Hartree-Fock calculations. In this papcr an additional... A general method in considering the core electromc correlation energies has been proposed and introduced into the standard Gaussian-2 (G2)[7] theory hy small post-Hartree-Fock calculations. In this papcr an additional MP2(FC)/6-31G(d) calculation over the G2 procedures is employed and examined in modihcation in modification to the flaw of Frozen-Core (FC) approximation of G2 vai eq:E(full)= E[MP2(full)/6-31G(d)]-E[MP2(FC)/6-31G(d)]where the MP2(full)/6-31G(d) cnergy has been obtaincd in the molefular gcometry optimizations. This energy, E(full), is directly added into the total G2 energy of a molecule in facilitating the effect of core electronic correlations for each molecule in chemical reactions. It has been shown that the over-all avcrage absolute deviation for the 125 reaction energies of the G2 test set (test set 1) is slightly reduced from 5.09 to 5.01 kJ, mol(-1) while for the 55 D0 values, which have been used for the derivation of the A coefficient of the empirical High-Level-Correction (HLC), it is also reduced from 4.99 [for both G2 and G2(COMPLETE)[8]]to 4.77 kJ, mol(-1). In addition, Iargcr crrors (greater than ±8.4 kJ. mol(-1) for the D0 energies are improved, especially for the largest error of the D0of SO2 This error is reduced from 21.3 to 15.4 kJ. mol(-1), in which the experimental geometry would further reduce it by 7.1kJ.mol(-1)[8].Another improvement is the absolute value of the A coefficient in HLC being reduced from 4.81 for G2 to 4.34 milli-hartrees which is believed to be useful in isolating the relationship between the HLC and the FC approximation.Modifications to the original G2 from this work is denoted as G2(fu 1) and thus the G2 (fu 1) total energy for a molecule isE[G2(fu 1)]= E[G2]+ E(full)with a new E[HLC] =0.19α- 4.34nβ milli-hartree. 展开更多
关键词 G2理论 电子相关 G2(ful)理论 修正
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几种含芯电子相关能修正的G2和G2(QCI)方法 被引量:1
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作者 苏克和 魏俊 +4 位作者 胡小玲 岳红 吕玲 王育彬 文振翼 《物理化学学报》 SCIE CAS CSCD 北大核心 2000年第11期972-980,共9页
针对冻结芯电子近似 ,在 MP2/6-311G(d,p)级别上对 G2、 MP2/6-31G(d)和 MP2/6-311G(d,p)级别上对 G2(QCI)方法进一步考虑了芯电子相关能修正 ,尝试建立了 G2(fu2)、 G2(QCI/fu1)和 G2(QCI/fu2)方法 .G2-1 test set的反应能量计算结果表... 针对冻结芯电子近似 ,在 MP2/6-311G(d,p)级别上对 G2、 MP2/6-31G(d)和 MP2/6-311G(d,p)级别上对 G2(QCI)方法进一步考虑了芯电子相关能修正 ,尝试建立了 G2(fu2)、 G2(QCI/fu1)和 G2(QCI/fu2)方法 .G2-1 test set的反应能量计算结果表明 ,这些方法进一步减小了经验修正量; G2(QCI/fu1)和 G2(QCI/fu2)也比 G2(QCI)的总体精度有所提高;但 G2(fu2)在 G2基础上 ,总体精度没有改善 .G2(fu2)、 G2(QCI/fu1)和 G2(QCI/fu2)计算 G2-1 test set反应能量的平均绝对偏差分别为 5.11、 4.74和 4.81 kJ· mol- 1,G2和 G2(QCI)分别为 5.09和 4.97 kJ· mol- 1. 展开更多
关键词 G2理论 G2(QCI)理论 电子相关 模型化学
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