The reactivity of CO on bimetallic Ni3M clusters (M = Sc, Ti, V, Cr, Mn, Fe, Co, Cu, Rh, Ru, Ag, Pd and Pt) by density functional theory

被引:5
作者
Roy, Ghanashyam [1 ]
Chattopadhyay, Asoke Prasun [2 ]
机构
[1] Krishnagar Govt Coll, Dept Chem, Nadia 741101, W Bengal, India
[2] Univ Kalyani, Dept Chem, Kalyani 741235, W Bengal, India
关键词
GAS SHIFT REACTION; CARBON-MONOXIDE; DFT; CATALYSTS; GROWTH; DISSOCIATION; HYDROCARBONS; GEOMETRIES; MECHANISM; PATHWAYS;
D O I
10.1039/c9nj01842e
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This work concerns the adsorption and dissociation of CO on doped Ni3M clusters, where M = Sc, Ti, V, Cr, Mn, Fe, Co, Cu, Rh, Ru, Ag, Pd and Pt, applying density functional theory to search for the best catalyst for CO dissociation. Butterfly geometry is observed for Ni3Sc, Ni3Ti and Ni3Cr, while the other clusters retain the distorted tetrahedral geometry. The presence of odd numbers of valence electrons, e.g. in Ni3Sc, Ni3V, Ni3Mn, Ni3Co, Ni3Cu, Ni3Rh and Ni3Ag clusters, allows open shell structures to show greater stability than closed shell clusters. However, the higher stability of the closed shell Ni3Ti cluster is due to the presence of a greater number of polar M-M bonds. Adsorption of CO on all the doped clusters is thermodynamically feasible under standard conditions. Dissociation is not thermodynamically feasible for any of the clusters, except on Ni3Sc. Though doping of any of the metals into the Ni-4 cluster decreases the CO dissociation barrier, none of the bimetallic clusters are good catalysts for CO dissociation. The formation of TiO, VO, CoO and MnO species reduces the catalytic activity of the doped Ni-4 cluster. Surface C binds at threefold coordination sites for most of the clusters. However, for the Ni3Fe cluster, surface C is tetra-coordinated and strongly binds to Fe, forming a sigma and a pi bond, and its greater s character favors hydrogenation. Surface O in Ni3Cu binds at threefold sites and has unpaired electrons, making it radical in nature, and more reactive than surface O in the Ni3Fe cluster. Greater positive Delta G values, the lower stability of the doped clusters, and a tendency toward adsorption all reduce the efficiency of the catalyst. Thus, Ni3Fe and Ni3Cu appear to be the best catalysts for CO dissociation.
引用
收藏
页码:11363 / 11373
页数:11
相关论文
共 38 条
  • [21] Effect of Promoter M (M = Au, Ag, Cu, Ce, Fe, Ni, Co, Zn) on the Activity of Pd-M/Al2O3 Catalysts of Ethanol Conversion into α-Alcohols
    Nikolaev, S. A.
    Tsodikov, M., V
    Chistyakov, A., V
    Chistyakova, P. A.
    Ezzhelenko, D., I
    Krotova, I. N.
    KINETICS AND CATALYSIS, 2020, 61 (06) : 894 - 902
  • [22] Theoretical design of alkaline earthides M+(36 adz) Be- (M plus = V, Cr, Mn, Fe, Co, Ni, Cu, and Zn) with excellent nonlinear optical response and ultraviolet transparency
    Hussain, Jabir
    Hussain, Riaz
    Hussain, Ajaz
    Yawer, Mirza Arfan
    Arshad, Muhammad
    Alarfaji, Saleh S.
    Rauf, Abdul
    Ayub, Khurshid
    JOURNAL OF MOLECULAR GRAPHICS & MODELLING, 2024, 130
  • [23] Site preference and magnetic orderings in the intermetallic boride series M1.5Rh5.5B3 (M = Cr, Mn, Fe, Co, Ni) from first principles DFT calculations
    Ndassa, Ibrahim M.
    Fokwa, Boniface P. T.
    COMPUTATIONAL MATERIALS SCIENCE, 2014, 92 : 416 - 421
  • [24] First-principles DFT study new series of ruthenates double perovskites Ba2MRuO6 with M = Sc, Ti, V, Cr, Mn, Fe and Co
    Saad, M. Musa H. -E
    MATERIALS CHEMISTRY AND PHYSICS, 2018, 204 : 350 - 360
  • [25] Electronic structure, chemical bonding and magnetism of the metal-rich borides MRh6B3 (M = Cr, Mn, Fe, Co, Ni) with Th7Fe3-type structure: A density functional theory study
    Ndassa, Ibrahim M.
    Gillessen, Michael
    Fokwa, Boniface P. T.
    SOLID STATE SCIENCES, 2013, 17 : 14 - 20
  • [26] Density functional theory study of novel high voltage cathode materials LiMSbO4 (M=Ni/Co/Fe/Mn) for Li ion battery applications
    Chakrabarti, Shamik
    Thakur, A. K.
    MATERIALS CHEMISTRY AND PHYSICS, 2025, 338
  • [27] Activity Test and Mechanism Study of 3DOM Ce0.8M0.1Zr0.1O2 (M=Cr, Sn, Fe, Co, Ni, Mn, Cu) Catalyst in the Selective Catalytic Reduction of NO by CO**
    Liu, Xia
    Liu, Hao
    Li, Danyang
    Ning, Gangjie
    Li, Xinxin
    Dong, Lihui
    Li, Bin
    CHEMCATCHEM, 2021, 13 (23) : 4998 - 5011
  • [28] Bis(azulene) "Submarine" Metal Dimer Sandwich Compounds (C10H8)2M2 (M = Ti, V, Cr, Mn, Fe, Co, Ni): Parallel and Opposed Orientations
    Wang, Hongyan
    Wang, Hui
    King, R. Bruce
    Schaefer, Henry F., III
    JOURNAL OF COMPUTATIONAL CHEMISTRY, 2016, 37 (02) : 250 - 260
  • [29] Catalytic performance of LaCo0.5M0.5O3 (M = Mn, Cr, Fe, Ni, Cu) perovskite-type oxides and LaCo0.5Mn0.5O3 supported on cordierite for CO oxidation
    Yan, Xiaokang
    Huang, Qiong
    Li, Bing
    Xu, Xiaoliang
    Chen, Yingwen
    Zhu, Shemin
    Shen, Shubao
    JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2013, 19 (02) : 561 - 565
  • [30] Stability, magnetic, energetic, and reactivity properties of icosahedral M@Pd12 (M = Fe, Co, Ni, and Cu) core-shell nanoparticles supported on pyridinic N3-doped graphene
    Sanchez-Rodriguez, E. P.
    Vargas-Hernandez, C. N.
    Cruz-Martinez, H.
    Medina, D. I.
    SOLID STATE SCIENCES, 2021, 112