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Improved DFT Adsorption Energies with Semiempirical Dispersion Corrections

机译:具有半透明色散校正的改进DFT吸附能量

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Over the past years, density functional theory (DFT) became a widely approved and successful method for calculating properties of various materials and molecules. Especially suited for systems with delocalized electrons like metals, the efficient treatment of the van der Waals interaction remained a problem for DFT functionals within the generalized gradient approximation (GGA). Combining Grimme's D3 correction with the RPBE functional and using a previously published data set, we show that this yields a functional that is well-suited for an accurate and balanced description of adsorption energies. The RPBE-D3 approach performs comparably to higher-level methods such as the BEEF-vdW and the SW-R88 method. Even for oxide systems, which traditionally are not well-described by GGA functionals, RPBE-D3 leads to satisfactorily results when combined with the +U approach, as demonstrated with respect to the energetic ordering of the three TiO2 polymorphs rutile, anatase, and brookite.
机译:在过去几年中,密度泛函理论(DFT)成为了计算各种材料和分子性质的广泛批准和成功的方法。 特别适用于具有截匙电子的系统,如金属,VAN DAR WAAS相互作用的有效处理仍然存在于广义梯度近似(GGA)内的DFT功能的问题。 将Grimme的D3校正与RPBE功能相结合,并使用先前发布的数据集,我们表明这产生了适合于对吸附能的准确和平衡描述的功能。 RPBE-D3方法相当于更高级别的方法执行,例如Beef-VDW和SW-R88方法。 即使对于通过GGA官能的氧化物系统,其传统上不是很好地描述,RPBE-D3也会与+ U接近结合时令人满意地导致达到+ U接近,如关于三TiO 2多晶型物润润,锐钛矿和Broughite的大能排序所示 。

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