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Benchmarking Density Functional Theory Based Methods To Model NiOOH Material Properties: Hubbard and van der Waals Corrections vs Hybrid Functionals

机译:基于基准密度泛函理论的NiOOH材料特性建模方法:Hubbard和van der Waals校正与混合函数

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摘要

NiOOH has recently been used to catalyze water oxidation by way of electrochemical water splitting. Few experimental data are available to rationalize the successful catalytic capability of NiOOH. Thus, theory has a distinctive role for studying its properties. However, the unique layered structure of NiOOH is associated with the presence of essential dispersion forces within the lattice. Hence, the choice of an appropriate exchange correlation functional within Density Functional Theory (DFT) is not straightforward. In this work, we will show that standard DFT is sufficient to evaluate the geometry, but DFT+U and hybrid functionals are required to calculate the oxidation states. Notably, the benefit of DFT with van der Waals correction is marginal. Furthermore, only hybrid functionals succeed in opening a bandgap, and such methods are necessary to study NiOOH electronic structure. In this work, we expect to give guidelines to theoreticians dealing with this material and to present a rational approach in the choice of the DFT method of calculation.
机译:NiOOH最近已被用于通过电化学水分解来催化水氧化。很少有实验数据可以使NiOOH的成功催化能力合理化。因此,理论在研究其性质方面具有独特的作用。但是,NiOOH的独特分层结构与晶格内必不可少的分散力有关。因此,在密度泛函理论(DFT)中选择合适的交换相关泛函并不容易。在这项工作中,我们将证明标准的DFT足以评估几何形状,但是需要DFT + U和混合官能团来计算氧化态。值得注意的是,采用范德华校正的DFT的好处是微不足道的。此外,只有混合功能才能成功打开带隙,并且这种方法对于研究NiOOH电子结构是必需的。在这项工作中,我们希望为处理这种材料的理论家提供指导,并在选择DFT计算方法时提出合理的方法。

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