Literature DB >> 34176977

Simulation of Metal-Supported Metal-Nanoislands: A Comparison of DFT Methods.

Gabriel A Vázquez-Lizardi1, Louis A Ruiz-Casanova1, Ricardo M Cruz-Sánchez1, Juan A Santana1.   

Abstract

We have evaluated various density functional theory (DFT) methods to simulate geometric, energetic, electronic, and hydrogen adsorption properties of metal-nanoparticles supported on metal surfaces. We used Pt and Pd nanoislands on Au(111) as model systems. The evaluated DFT methods include GGA (PW91, PBE, RPBE, revPBE, and PBESol), GGA with van der Waals (vdW) corrected (PBE-D3), GGA with optimized vdW functionals (revPBE-vdW), meta-GGA (SCAN and MS2), and the machine learning-based method BEEF-vdW. The results show that the various DFT methods yield similar geometric and electronic properties for Pt (or Pd) nanoislands on Au(111). The DFT methods also produce similar relative energetics for small Pt (or Pd) clusters with different conformations on Au(111). The results show that a triatomic cluster of Pt on Au(111) is more stable with a linear conformation. In contrast, a triatomic cluster of Pd is more stable with a triangular conformation. For clusters with four or more atoms, Pt and Pd clusters on Au(111) prefer non-linear conformation. We found that the various DFT methods yield different results only for the adsorption energy of hydrogen.

Entities:  

Keywords:  DFT calculation; GGA; Meta-GGA; XC functional; hydrogen adsorption; vdW correction

Year:  2021        PMID: 34176977      PMCID: PMC8224827          DOI: 10.1016/j.susc.2021.121889

Source DB:  PubMed          Journal:  Surf Sci        ISSN: 0039-6028            Impact factor:   2.070


  39 in total

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Journal:  Phys Chem Chem Phys       Date:  2019-09-17       Impact factor: 3.676

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