Literature DB >> 31063683

Selective Acetylene Hydrogenation over Single-Atom Alloy Nanoparticles by Kinetic Monte Carlo.

Mikkel Jørgensen1, Henrik Grönbeck1.   

Abstract

Single-atom alloys, which are prepared by embedding isolated metal sites in host metals, are promising systems for improved catalyst selectivity. For technical applications, catalysts based on nanoparticles are preferred thanks to a large surface area. Herein, we investigate hydrogenation of acetylene to ethylene using kinetic Monte Carlo simulations based on density functional theory and compare the performance of Pd/Cu nanoparticles with Pd(111) and Pd/Cu(111). We find that embedding Pd in Cu systems strongly enhances the selectivity and that the reaction mechanism is fundamentally different for nanoparticles and extended surfaces. The reaction mechanism on nanoparticles is complex and involves elementary steps that proceed preferentially over different sites. Edge and corner sites on nanoparticles are predicted to lower the selectivity, and we infer that a rational design strategy in selective acetylene hydrogenation is to maximize the number of (111) sites in relation to edge sites for Pd/Cu nanoparticles.

Entities:  

Year:  2019        PMID: 31063683     DOI: 10.1021/jacs.9b02132

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  2 in total

1.  Discovery of a New Solvent Co-Catalyzed Mechanism in Heterogeneous Catalysis: A First-Principles Study with Molecular Dynamics on Acetaldehyde Hydrogenation on Birnessite.

Authors:  Wenbo Xie; Glenn Reid; P Hu
Journal:  JACS Au       Date:  2022-01-21

2.  Tuning crystal-phase of bimetallic single-nanoparticle for catalytic hydrogenation.

Authors:  Shuang Liu; Yong Li; Xiaojuan Yu; Shaobo Han; Yan Zhou; Yuqi Yang; Hao Zhang; Zheng Jiang; Chuwei Zhu; Wei-Xue Li; Christof Wöll; Yuemin Wang; Wenjie Shen
Journal:  Nat Commun       Date:  2022-08-05       Impact factor: 17.694

  2 in total

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