Systematic DFT studies of CO-Tolerance and CO oxidation on Cu-doped Ni surfaces

被引:25
|
作者
Hefnawy, Mahmoud A. [1 ]
Fadlallah, Sahar A. [1 ]
-Sherif, Rabab M. El [1 ]
Medany, Shymaa S. [1 ]
机构
[1] Cairo Univ, Fac Sci, Chem Dept, Giza 12613, Egypt
关键词
CO-Tolerance; DFT study; Cu-doped Ni; Density of states; CO-Oxidation; DENSITY-FUNCTIONAL THEORY; CARBON-MONOXIDE; INFRARED-SPECTRA; MOLECULAR ADSORPTION; GRAPHENE; NICKEL; CHEMISORPTION; TRANSITION; SINGLE; MECHANISM;
D O I
10.1016/j.jmgm.2022.108343
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Nickel-based surfaces have received significant attention as an efficient substrate for electrooxidation. This work studied doped nickel surfaces with Cu atoms to enhance the CO-Tolerance. A comparative study was performed for CO adsorption upon different cleavage facets of pristine and Cu-doped nickel surfaces, whereas the adsorption energy, charge transfer, and density of state for CO were estimated using GGA-RPBE calculation method. Several adsorption probabilities were considered, and the change in adsorption energy and bond lengths were used to explain the CO adsorption mechanism. Otherwise, the density of state was employed to study the 3 sigma and 1 pi orbital to demonstrate the adsorption of CO onto the different facets. According to our analysis, the Cu-doped nickel surface showed higher CO tolerance than the pristine nickel surface. Whereas the calculated CO adsorption energies of Cu-doped surfaces have more positive values than the non-doped counterparts. The catalytic ability of pristine and Cu-doped Ni(111) was studied to evaluate the ability of surface poisoning resistance. Thus, oxidation of CO to CO2 was studied using the Eley-Rideal mechanism upon the pristine and Cu -doped surfaces of Ni(100) where the rate-determining step for CO oxidation upon the reported surfaces was estimated as CO + O2* -> CO2* + O* by an energy barrier of 1.05 and 0.9 eV for pristine, and Cu-doped Ni (100).
引用
收藏
页数:7
相关论文
共 50 条
  • [1] CO oxidation on Cu-doped Ag clusters
    Ma, Wenqiang
    Chen, Fuyi
    THEORETICAL CHEMISTRY ACCOUNTS, 2013, 132 (02) : 1 - 6
  • [2] CO oxidation on Cu-doped Ag clusters
    Wenqiang Ma
    Fuyi Chen
    Theoretical Chemistry Accounts, 2013, 132
  • [3] Cu-doped phosphorene as highly efficient single atom catalyst for CO oxidation: A DFT study
    Butt, Muhammad Hamid
    Zaidi, Syeda Huda Mehdi
    Nabeela
    Khan, Ayesha
    Ayub, Khurshid
    Yar, Muhammad
    Hashmi, Muhammad Ali
    Yawer, Mirza Arfan
    Zia, Muhammad Abid
    MOLECULAR CATALYSIS, 2021, 509
  • [4] CO Dissociation Mechanism on Cu-Doped Fe(100) Surfaces
    Zhao, Yonghui
    Li, Shenggang
    Sun, Yuhan
    JOURNAL OF PHYSICAL CHEMISTRY C, 2013, 117 (47): : 24920 - 24931
  • [5] Ferromagnetism studies of Cu-doped and (Cu, Al) co-doped ZnO thin films
    Wu, S. Z.
    Yang, H. L.
    Xu, X. G.
    Miao, J.
    Jiang, Y.
    1ST INTERNATIONAL SYMPOSIUM ON SPINTRONIC DEVICES AND COMMERCIALIZATION (ISSDC2010), 2011, 263
  • [6] Preparation and characterization of Cu-doped mesoporous CeO2 for CO oxidation
    Jun-jie Tian
    Wei Na
    Hua Wang
    Wen-gui Gao
    Journal of Central South University, 2014, 21 : 482 - 486
  • [7] Preparation and characterization of Cu-doped mesoporous CeO2 for CO oxidation
    田俊杰
    纳薇
    王华
    高文桂
    JournalofCentralSouthUniversity, 2014, 21 (02) : 482 - 486
  • [8] Preparation and characterization of Cu-doped mesoporous CeO2 for CO oxidation
    Tian Jun-jie
    Na Wei
    Wang Hua
    Gao Wen-gui
    JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2014, 21 (02) : 482 - 486
  • [9] DFT modelling of the CO-NO redox reaction at Cu-doped SrTiO3(100) stepped surface: CO oxidation at lattice O ions
    Carlotto, Silvia
    Vittadini, Andrea
    Casarin, Maurizio
    INORGANICA CHIMICA ACTA, 2020, 511
  • [10] Microstructural, crystallographic and optical characterizations of Cu-doped ZnO nanoparticles co-doped with Ni
    S. Anandan
    S. Muthukumaran
    Journal of Materials Science: Materials in Electronics, 2015, 26 : 4298 - 4307