Lattice oxygen evolution in rutile Ru1-xNixO2 electrocatalysts

被引:1
|
作者
Frandsen, Adrian Malthe [1 ]
Macounova, Katerina Minhova [2 ]
Rossmeisl, Jan [1 ]
Krtil, Petr [2 ]
机构
[1] Univ Copenhagen, Ctr High Entropy Alloy Catalysis, Dept Chem, Univ Pk 5, DK-2100 Copenhagen, Denmark
[2] J Heyrovsky Inst Phys Chem, Dolejskova 2155-3, Prague 18223 8, Czech Republic
基金
新加坡国家研究基金会;
关键词
Lattice oxygen evolution; Ru1-xTixO2 theoretical catalysis; Electrolysis; DFT; Surface modeling; WATER; ELECTROCATALYSIS; ELECTROLYSIS; RUO2; UNIVERSALITY; ELECTRODES; REDUCTION; VOLCANO; SIZE;
D O I
10.1016/j.electacta.2024.144567
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Efficient predictive tools for oxygen evolution reaction (OER) activity assessment are vital for rational design of anodes for green hydrogen production. Reaction mechanism prediction represents an important pre-requisite for such catalyst design. Even then, lattice oxygen evolution remains understudied and without reliable prediction methods. We propose a computational screening approach using density functional theory evaluate the lattice oxygen evolution tendency in candidate surfaces. The method is based on a systematic assessment of the adsorption energies of oxygen evolution intermediates on model active sites with varying local structure. The power of the model is shown on model rutile (110) oriented surfaces of (a) RuO2, Ru1-xNixO2 and (c) Ru1-xTixO2. The model predicts (a) no lattice exchange, (b) lattice exchange at elevated electrode potentials and (c) minor lattice exchange at elevated electrode potentials and high titanium content. While in the case of (a) and (b) the predictions provide sufficiently accurate agreement with experimental data, (c) experimentally deviates from the above prediction by expressing a high tendency to evolve lattice oxygen at high titanium content (x = 0 . 20 ). This discrepancy can likely be attributed to the presence of structural defects in the prepared material, which are hard to accurately model with the applied methodology.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Analysis of local structure of Ru1-xNixO2 electrocatalytic materials
    Petrykin, V.
    Macounova, K.
    Okube, M.
    Franc, J.
    Krtil, P.
    14TH INTERNATIONAL CONFERENCE ON X-RAY ABSORPTION FINE STRUCTURE (XAFS14), PROCEEDINGS, 2009, 190
  • [2] Oxygen evolution on Ru1-xNixO2-y nanocrystalline electrodes
    Macounova, Katerina
    Jirkovsky, Jakub
    Makarova, Marina V.
    Franc, Jiri
    Krtil, Petr
    JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 2009, 13 (06) : 959 - 965
  • [3] Oxygen evolution on Ru1 − xNixO2 − y nanocrystalline electrodes
    Kateřina Macounová
    Jakub Jirkovský
    Marina V. Makarova
    Jiří Franc
    Petr Krtil
    Journal of Solid State Electrochemistry, 2009, 13 : 959 - 965
  • [4] Parallel oxygen and chlorine evolution on Ru1-xNixO2-y nanostructured electrodes
    Macounova, Katerina
    Makarova, Marina
    Jirkovsky, Jakub
    Franc, Jiri
    Krtil, Petr
    ELECTROCHIMICA ACTA, 2008, 53 (21) : 6126 - 6134
  • [5] Multimetallic Electrocatalysts of Pt, Ru, and Ir Supported on Anatase and Rutile TiO2 for Oxygen Evolution in an Acid Environment
    Fuentes, Roderick E.
    Farell, Jake
    Weidner, John W.
    ELECTROCHEMICAL AND SOLID STATE LETTERS, 2011, 14 (03) : E5 - E7
  • [6] Competition between Lattice Oxygen and Adsorbate Evolving Mechanisms in Rutile Ru-Based Oxide for the Oxygen Evolution Reaction
    Liu, Shangguo
    Chang, Yaxiang
    He, Na
    Zhu, Shenglin
    Wang, Lianbao
    Liu, Xien
    ACS APPLIED MATERIALS & INTERFACES, 2023, 15 (16) : 20563 - 20570
  • [7] Lattice Oxygen Exchange in Rutile IrO2 during the Oxygen Evolution Reaction
    Schweinar, Kevin
    Gault, Baptiste
    Mouton, Isabelle
    Kasian, Olga
    JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2020, 11 (13): : 5008 - 5014
  • [8] Disordered Rocksalts with Lattice Oxygen Activation as Efficient Oxygen Evolution Electrocatalysts
    Zhengli Huan
    Haipeng Fu
    Xuerong Zheng
    Huiming Ji
    Transactions of Tianjin University, 2023, 29 (04) : 304 - 312
  • [9] Disordered Rocksalts with Lattice Oxygen Activation as Efficient Oxygen Evolution Electrocatalysts
    Zhengli Huan
    Haipeng Fu
    Xuerong Zheng
    Huiming Ji
    Transactions of Tianjin University, 2023, (04) : 304 - 312
  • [10] Disordered Rocksalts with Lattice Oxygen Activation as Efficient Oxygen Evolution Electrocatalysts
    Huan, Zhengli
    Fu, Haipeng
    Zheng, Xuerong
    Ji, Huiming
    TRANSACTIONS OF TIANJIN UNIVERSITY, 2023, 29 (04) : 304 - 312