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Assessment of two hybrid van der Waals density functionals for covalent and non-covalent binding of molecules

机译:评估分子共价和非共价结合的两个杂交van der waals密度官能

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Two hybrid van der Waals density functionals (vdW-DFs) are developed using 25% Fock exchange with (i) the consistent-exchange vdW-DF-cx functional [K. Berland and P. Hyldgaard, Phys. Rev. B89, 035412 (2014)] and (ii) with the vdW-DF2 functional [K. Lee et al., Phys. Rev. B 82, 081101 (2010)]. The ability to describe covalent and non-covalent binding properties of molecules is assessed. For properties related to covalent binding, atomization energies (G2-1 set), molecular reaction energies (G2RC set), and ionization energies (G21IP set) are benchmarked against experimental reference values. We find that hybrid-vdW-DF-cx yields results that are rather similar to those of the standard non-empirical hybrid PBE0 [C. Adamo and V. Barone, J. Chem. Phys. 110, 6158 (1999)], with mean average deviations (MADs) of 4.9 and 5.0 kcal/mol for the G2-1 set, respectively. In this comparison, experimental reference values are used, back corrected by wavefunction-based quantum-chemistry calculations of zero-point energies. Hybrid vdW-DF2 follows somewhat different trends, showing on average significantly larger deviations from the reference energies, with a MAD of 14.5 kcal/mol for the G2-1 set. Non-covalent binding properties of molecules are assessed using the S22 benchmark set of non-covalently bonded dimers and the X40 set of dimers of small halogenated molecules, using wavefunction-based quantum chemistry results as references. For the S22 set, hybrid-vdW-DF-cx performs better than standard vdW-DF-cx for the mostly hydrogen-bonded systems, with MAD dropping from 0.6 to 0.3 kcal/mol, but worse for purely dispersion-bonded systems, with MAD increasing from 0.2 to 0.6 kcal/mol. Hybrid-vdW-DF2 offers a slight improvement over standard vdW-DF2. Similar trends are found for the X40 set, with hybrid-vdW-DF-cx performing particularly well for binding energies involving the strongly polar hydrogen halides, but poorly for systems with tiny binding energies. Our study of the X40 set reveals the potential of mixing Fock exchange with vdW-DF, but also highlights shortcomings of the hybrids constructed here. The solid performance of hybrid-vdW-DF-cx for covalent-bonded systems, as well as the strengths and issues uncovered for non-covalently bonded systems, makes this study a good starting point for developing even more accurate hybrid vdW-DFs. Published by AIP Publishing.
机译:双杂交范德华密度泛函(范德华-DFS)是使用25%的福克交换与(i)的一致交换范德华-DF-CX官能[K.开发贝兰和P. Hyldgaard,Phy。修订版B89,035412(2014)]和(ii)与范德华-DF2官能[K. Lee等人。,phy。版本B 82,081101(2010)]。来描述共价和分子的非共价结合性质的能力进行评估。对于结合涉及共价性质,雾化能量(G2-1集),分子反应能量(G2RC集),并且电离能(G21IP集)的基准对实验的参考值。我们发现,混合范德华-DF-CX产生的结果是非常相似的那些标准的非经验混合PBE0的[C.阿达莫和V. Barone的,J.化学。物理。 110,6158(1999)],具有分别为4.9和5.0千卡/摩尔的G2-1集,中值平均偏差(MADS)。在这个比较中,实验参考值被使用时,通过零点能基于波函数量子化学计算回校正。混合范德华-DF2如下有所不同的趋势,表现出对从基准能量平均显著偏差较大,为14.5千卡/摩尔的G2-1集的MAD。非共价结合分子的属性是使用非共价键合的二聚体的S22基准集合和X40组小卤化分子的二聚物的评估,使用基于波函数量子化学的结果作为参考。对于S22组,混合范德华-DF-CX从0.6至0.3千卡/摩尔为纯粹分散键合的系统进行比标准范德华-DF-CX为大多氢键系统较好,MAD滴,但糟糕的是,与MAD为0.2至0.6千卡/摩尔增加。混合范德华DF2提供了超过标准的范德华DF2略有改善。类似的趋势被发现为X40集,与混合范德华DF-CX尤其表现良好的结合涉及强极性卤化氢的能量,但对于不善与小结合能系统。我们对X40集的研究揭示了混合范德华DF福克交流的潜力,也凸显在这里构建的杂交种缺点。混合范德华DF-CX的共价结合的系统,以及优势和问题,发现非共价键合系统中的稳健表现,使得这一研究的良好起步,发展更加精确的混合范德华话语结构。通过AIP发布发布。

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