Revealing the catalytic oxidation mechanism of CO on α-Fe2O3 surfaces: an ab initio thermodynamic study

被引:0
作者
Song, Yun-Hyok [1 ]
Kye, Yun-Hyok [1 ,2 ]
Pang, Myong-Il [2 ]
Ho, Yong-Min [2 ]
Choe, Hyon-Chol [1 ]
Yu, Chol-Jun [1 ]
Ri, Chol-Yong [2 ]
机构
[1] Kim Il Sung Univ, Fac Mat Sci, Computat Mat Design CMD, Pyongyang, North Korea
[2] Kim Il Sung Univ, Inst Nanomat, Fac Mat Sci, Pyongyang, North Korea
关键词
SINGLE-ATOM CATALYSIS; OXIDE; TERMINATION; ADSORPTION; STABILITY; GOLD; DFT;
D O I
10.1039/d4cp04247f
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Significant research efforts have been devoted to improving the efficiency of catalytic carbon monoxide (CO) oxidation over alpha-Fe2O3-based catalysts, but details of the underlying mechanism are still under debate. Here we apply the ab initio thermodynamic method (AITM) within the density functional theory framework to investigate the phase diagram of alpha-Fe2O3(0001) surfaces with various terminations and the catalytic mechanism of CO oxidation on these surfaces. By extending the conventional AITM to consider the charge state of surface defects, we build the phase diagram of alpha-Fe2O3(0001) surfaces in relation to the Fermi energy as well as the oxygen chemical potential, which makes it possible to explain the influence of point defects on the surface morphology and to predict the existence of the experimentally observed functional sites such as the ferryl group (Fe 00000000 00000000 00000000 00000000 11111111 00000000 11111111 00000000 00000000 00000000 O) and oxygen vacancies. Our calculations show that the surface with the ferryl-termination exhibits the highest catalytic activity for CO oxidation with remarkably low activation energy (0.05 eV) and the largest exothermic reaction energy, while other surfaces with different terminations are inadequate with relatively high activation energies. Moreover, it is revealed that a Fermi energy increase by means of intrinsic or extrinsic n-type doping is beneficial to the formation of ferryl-termination under both oxygen-rich and oxygen-poor conditions, which promotes the catalytic oxidation of CO via the Eley-Rideal (E-R) mechanism only (O-rich) or in combination with the Mars-van Krevelen (MvK) mechanism (O-poor). Meanwhile, under the O-poor conditions, a Fermi energy decrease by p-type doping facilitates the formation of oxygen vacancies and the CO oxidation might be promoted via the MvK mechanism which is less effective with higher activation energy than the E-R mechanism. Our work provides new fundamental insights into CO oxidation chemistry and mechanisms, thereby contributing to the design of new catalysts with high performance and low cost.
引用
收藏
页码:3278 / 3290
页数:13
相关论文
共 50 条
  • [31] Low-temperature CO oxidation over CuO/Fe2O3 catalysts
    Cheng, Tao
    Fang, Zhiyong
    Hu, Qixiu
    Han, Kaidong
    Yang, Xiaozhi
    Zhang, Youjin
    CATALYSIS COMMUNICATIONS, 2007, 8 (07) : 1167 - 1171
  • [32] DFT Study on CO Catalytic Oxidation Mechanism on the Defective Cu2O(111) Surface
    Wu, Ling-Nan
    Tian, Zhen-Yu
    Qin, Wu
    JOURNAL OF PHYSICAL CHEMISTRY C, 2018, 122 (29) : 16733 - 16740
  • [33] Effect of supports over Pd/Fe2O3 on CO oxidation at low temperature
    Wang, Li
    Pu, Chunhua
    Xu, Lele
    Cai, Yafeng
    Guo, Yanglong
    Guo, Yun
    Lu, Guanzhong
    FUEL PROCESSING TECHNOLOGY, 2017, 160 : 152 - 157
  • [34] Fe2O3 catalyst doped with MnOx for low-temperature CO oxidation
    Wang, Pu
    Li, Xue
    Zou, Yang
    Tian, Mengkui
    Liu, Xiaolong
    Zhu, Tingyu
    PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2025, 195
  • [35] Preparation of Au/Fe2O3 catalyst and its catalytic performance for selective oxidation of CO in hydrogen-rich gas
    Liu, CT
    Shi, PF
    Zhang, JX
    CHINESE JOURNAL OF CATALYSIS, 2004, 25 (09) : 697 - 701
  • [36] The Effect of Covering Fe2O3 with a Ga2O3 Overlayer on Water Oxidation Catalysis
    Aharon, Eran
    Toroker, Maytal Caspary
    CATALYSIS LETTERS, 2017, 147 (08) : 2077 - 2082
  • [37] Coupling Adsorbed Evolution and Lattice Oxygen Mechanism in Fe-Co(OH)2/Fe2O3 Heterostructure for Enhanced Electrochemical Water Oxidation
    Xin, Sisi
    Tang, Yu
    Jia, Baohua
    Zhang, Zhengfu
    Li, Chengping
    Bao, Rui
    Li, Caiju
    Yi, Jianhong
    Wang, Jinsong
    Ma, Tianyi
    ADVANCED FUNCTIONAL MATERIALS, 2023, 33 (45)
  • [38] Revealing the microscopic mechanism of PuO2 and α-Pu2O3 in resisting plutonium hydrogenation via ab initio molecular dynamics simulation
    Tang, Jun
    Qiu, Ruizhi
    Chen, Jinfan
    Ao, Bingyun
    JOURNAL OF ALLOYS AND COMPOUNDS, 2021, 874
  • [39] Highly active and durable Pd/Fe2O3 catalysts for wet CO oxidation under ambient conditions
    Ivanova, A. S.
    Slavinskaya, E. M.
    Stonkus, O. A.
    Gulyaev, R. V.
    Glazneva, T. S.
    Noskova, A. S.
    Boronin, A. I.
    CATALYSIS SCIENCE & TECHNOLOGY, 2016, 6 (11) : 3918 - 3928
  • [40] High Activity of Au/γ-Fe2O3 for CO Oxidation: Effect of Support Crystal Phase in Catalyst Design
    Zhao, Kunfeng
    Tang, Hailian
    Qiao, Botao
    Li, Lin
    Wang, Junhu
    ACS CATALYSIS, 2015, 5 (06): : 3528 - 3539