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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Performance of Density Functional Theory for Second Row (4d) Transition Metal Thermochemistry
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Performance of Density Functional Theory for Second Row (4d) Transition Metal Thermochemistry

机译:密度泛函理论在第二行(4d)过渡金属热化学反应中的性能

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The performances of 22 density functionals, including generalized gradient approximation (GGA), hybrid GGAs, hybrid-meta GGAs, and range-separated and double hybrid functionals, in combination with the correlation consistent basis sets and effective core potentials, have been gauged for the prediction of gas phase enthalpies of formation for the TM4d set, which contains 30 second row transition metal-containing molecules. The enthalpies of formation determined by the 22 density functionals were compared to those generated via the relativistic pseudopotential correlation consistent Composite Approach (rp-ccCA), which has a goal of reproducing energies akin to those from CCSD(T,FCl)-DK/aug-cc-pCVooZ-DK calculations. B3LYP/cc-pVTZ-PP optimized geometries were used in this study, though structures determined by other functionals also were examined. Of the functionals employed, the double hybrid functionals, B2GP-PLYP and mPW2-PLYP, yielded the best overall results with mean absolute deviations (MADs) from experimental enthalpies of formation of 4.2S and 5.19 kcal mol~(-1), respectively. The GGA functionals BP86 and PBEPBE resulted in deviations from experiment of nearly 100 kcal mol~(-1) for molecules such as molybdenum carbonyls. The ωB97X-D functional, which includes the separation of exchange energy into long-range and short-range contributions and includes a dispersion correction, resulted in an MAD of 6.52 kcal mol~(-1).
机译:评估了22种密度泛函的性能,包括广义梯度逼近(GGA),混合GGA,混合元GGA,范围分隔和双重混合泛函以及相关的一致基础集和有效核心电势。预测TM4d组的气相生成焓,其中包含30个第二行含过渡金属的分子。将由22个密度泛函确定的形成焓与通过相对论性伪势相关一致复合方法(rp-ccCA)生成的焓进行比较,该方法的目标是从CCSD(T,FC1)-DK / aug再生能量-cc-pCVooZ-DK计算。本研究中使用了B3LYP / cc-pVTZ-PP优化的几何形状,但也检查了由其他功能确定的结构。在所使用的官能团中,双杂化官能团B2GP-PLYP和mPW2-PLYP产生了最佳的总体结果,分别与形成4.2S和5.19 kcal mol〜(-1)的实验焓的平均绝对偏差(MAD)一致。 GGA的功能BP86和PBEPBE导致与羰基钼等分子的实验偏差接近100 kcal mol〜(-1)。 ωB97X-D的功能包括将交换能量分为远距离和近距离贡献,并包括色散校正,其MAD为6.52 kcal mol〜(-1)。

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