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通过使用具有修正的Vydrov van Voorhis范德华力校正的强约束和适当归一化的半局域密度泛函,重新研究氧气在Ag(111)上的吸附。

Reinvestigating oxygen adsorption on Ag(111) by using strongly constrained and appropriately normed semi-local density functional with the revised Vydrov van Voorhis van der Waals force correction.

作者信息

Hinsch Jack J, Liu Junxian, Wang Yun

机构信息

School of Environment and Science, Centre for Catalysis and Clean Energy, Griffith University, Gold Coast QLD 4222, Australia.

出版信息

J Chem Phys. 2021 Dec 21;155(23):234704. doi: 10.1063/5.0073407.

Abstract

While density functional theory (DFT) at the generalized gradient approximation (GGA) level has made great success in catalysis, it fails in some important systems such as the adsorption of the oxygen molecule on the Ag(111) surface. Previous DFT studies at the GGA level revealed theoretical inconsistencies on the adsorption energies and dissociation barriers of O on Ag(111) in comparison with the experimental conclusion. In this study, the strongly constrained and appropriately normed-revised Vydrov van Voorhis van der Waals correction functional (SCAN-rVV10) method at the meta-GGA level with the nonlocal van der Waals (vdW) force correction was used to reinvestigate the adsorption properties of O on the Ag(111) surface. The SCAN-rVV10 results successfully confirm the experimental observation that both molecular and dissociative adsorptions can exist for oxygen on Ag(111). The calculated adsorption energy for the physisorption state and the relevant dissociation energy barrier are close to the experimental data. It demonstrates that SCAN-rVV10 can outperform functionals at the GGA level for O/Ag(111). Therefore, our findings suggest that SCAN-rVV10 can be the desired method for systems where the correct description of intermediate-ranged vdW forces is essential, such as the physisorption of small molecules on the solid surface.

摘要

虽然广义梯度近似(GGA)水平的密度泛函理论(DFT)在催化领域取得了巨大成功,但它在一些重要体系中却失效了,比如氧分子在Ag(111)表面的吸附。之前GGA水平的DFT研究表明,与实验结论相比,O在Ag(111)上的吸附能和解离势垒存在理论上的不一致。在本研究中,采用了具有非局域范德华(vdW)力校正的meta-GGA水平的强约束且适当归一化修正的Vydrov van Voorhis范德华校正泛函(SCAN-rVV10)方法,重新研究O在Ag(111)表面的吸附特性。SCAN-rVV10的结果成功证实了实验观察结果,即氧在Ag(111)上既可以存在分子吸附也可以存在解离吸附。计算得到的物理吸附态的吸附能和相关的解离能垒与实验数据接近。这表明对于O/Ag(111)体系,SCAN-rVV10比GGA水平的泛函表现更优。因此,我们的研究结果表明,对于那些需要正确描述中程vdW力的体系,比如小分子在固体表面的物理吸附,SCAN-rVV10可能是理想的方法。

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