首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Minimally Empirical Double-Hybrid Functionals Trained against the GMTKN55 Database: revDSD-PBEP86-D4, revDOD-PBE-D4, and DOD-SCAN-D4
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Minimally Empirical Double-Hybrid Functionals Trained against the GMTKN55 Database: revDSD-PBEP86-D4, revDOD-PBE-D4, and DOD-SCAN-D4

机译:最微小的经验双混合功能,针对GMTKN55数据库培训:REVDSD-PBEP86-D4,REVDOD-PBE-D4和DOD-SCAN-D4

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摘要

We present a family of minimally empirical double-hybrid DFT functionals parametrized against the very large and diverse GMTKN55 benchmark. The very recently proposed omega B97M(2) empirical double hybrid (with 16 adjustable parameters) has the lowest WTMAD2 (weighted mean absolute deviation over GMTKN55) ever reported at 2.19 kcal/mol. However, refits of the DSD-BLYP and DSD-PBEP86 spin-component-scaled, dispersion-corrected double hybrids can achieve WTMAD2 values as low as 2.33 with the very recent D4 dispersion correction (2.42 kcal/mol with the D3(BJ) dispersion term) using just a handful of adjustable parameters. If we use full DFT correlation in the initial orbital evaluation, the xrevDSD-PBEP86-D4 functional reaches WTMAD2 = 2.23 kcal/mol, statistically indistinguishable from omega B97M(2) but using just four nonarbitrary adjustable parameters (and three semiarbitrary ones). The changes from the original DSD parametrizations are primarily due to noncovalent interaction energies for large systems, which were undersampled in the original parametrization set. With the new parametrization, same-spin correlation can be eliminated at minimal cost in performance, which permits revDOD-PBEP86-D4 and revDOD-PBE-D4 functionals that scale as N-4 or even N-3 with the size of the system. Dependence of WTMAD2 for DSD functionals on the percentage of HF exchange is roughly quadratic; it is sufficiently weak that any reasonable value in the 64% to 72% range can be chosen semiarbitrarily. DSD-SCAN and DOD-SCAN double hybrids involving the SCAN nonempirical meta-GGA as the semilocal component have also been considered and offer a good alternative if one wishes to eliminate either the empirical dispersion correction or the same-spin correlation component. noDispSD-SCAN66 achieves WTMAD2 = 3.0 kcal/mol, compared to 2.7 kcal/mol for DOD-SCAN66-D4. However, the best performance without dispersion corrections (WTMAD2 = 2.8 kcal/mol) is reached by rev omega B97X-2, a slight reparame
机译:我们展示了一个微量经验的双杂交DFT功能参数化,针对非常大而多样化的GMTKN55基准。最近提出的OMEGA B97M(2)经验双杂化(具有16个可调参数)具有最低的WTMAD2(GMTKN55的加权平均绝对偏差),以2.19千卡/摩尔报告。但是,DSD-BLYP和DSD-PBEP86的重构旋转组件缩放的色散校正的双杂化物可以通过最近的D4色散校正(2.42千卡/摩尔与D3(BJ)色散为低至2.33的WTMAD2值术语)仅使用少数可调参数。如果我们在初始轨道评估中使用全DFT相关性,XREVDSD-PBEP86-D4功能达到WTMAD2 = 2.23 kcal / mol,统计上与Omega B97M(2)无区别,但仅使用四个非丙二酸可调参数(和三种半腈)。原始DSD参数化的变化主要是由于大型系统的非价交互能量,这在原始参数集中缺乏采样。随着新的参数化,相同的自旋相关可以在性能最低的成本,这允许revDOD-PBEP86-D4和revDOD-PBE-D4函被消除水垢如N-4或甚至N-3与所述系统的尺寸。 WTMAD2对HF交换百分比的DSD功能的依赖性大致二次;它足够弱,可以确定64%至72%范围内的任何合理值。 DSD-SCAN和DOD-SCAN双杂交涉及扫描非透镜元组件作为半决分组件的DSD扫描双混合物,如果希望消除经验色散校正或相同旋转相关组分,则提供良好的替代方案。 Nodispsd-Scan66实现了WTMAD2 = 3.0千卡/摩尔,而DOD-SCAN66-D4为2.7千卡/摩尔。但是,通过Rev Omega B97X-2达到了没有色散校正(WTMAD2 = 2.8 kcal / mol)的最佳性能,略微重新播放

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