Electronic Structure and Stability of the Active Surface Phase of Ni x Co3-x O4 Spinel Alkaline O2 Evolution Electrocatalysts: From an Epitaxial Model Catalyst Perspective

被引:0
|
作者
Tian, Chuanmu [1 ]
Maheu, Clement [1 ,2 ]
Huang, Xiaochun [3 ]
Oropeza, Freddy E. [4 ]
Major, Marton [5 ]
Broetz, Joachim [5 ]
Einert, Marcus [1 ]
Donner, Wolfgang [5 ]
Slimi, Younes [6 ,7 ]
Schmidt-Grund, Ru''diger [6 ]
Zhang, Kelvin H. L. [3 ]
Hofmann, Jan P. [1 ]
机构
[1] Tech Univ Darmstadt, Dept Mat and Geosci, Surface Sci Lab, D-64287 Darmstadt, Germany
[2] Nantes Univ, Inst Mat Jean Rouxel, CNRS, IMN, F-44000 Nantes, France
[3] Xiamen Univ, Coll Chem & Chem Engn, State Key Lab Phys Chem Solid Surfaces, Xiamen 361005, Peoples R China
[4] Parque Tecnol Mostoles, IMDEA Energy Inst, Photoactivated Proc Unit, Madrid 28935, Spain
[5] Tech Univ Darmstadt, Dept Mat and Geosci, D-64287 Darmstadt, Germany
[6] Tech Univ Ilmenau, Inst Phys, D-98684 Ilmenau, Germany
[7] Univ Ferhat Abbas Setif 1, Inst Opt & Precis Mech, Appl Opt Lab, Setif DZ-19000, Algeria
来源
ACS APPLIED ENERGY MATERIALS | 2024年 / 7卷 / 20期
关键词
Ni-doped Co3O4; oxygen evolutionreaction; single crystal; electronic structure; hole state; NANOWIRE ARRAYS; OXYGEN; CO3O4; OER;
D O I
10.1021/acsaem.4c01688
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
In this work, we investigate the relationship between the surface stability, electronic structure of Ni3+ hole states, and oxygen evolution reaction (OER) activity in epitaxially grown NixCo3-xO4 (x = 0, 0.3, 1.0) model electrocatalysts through analysis of their electronic structure before and after electrochemical treatments. The use of flat, structurally well-defined models allows us to apply advanced characterization methods, not applicable to powder catalysts. The OER activity of all NixCo3-xO4 samples increases consistently upon cyclic voltammetry (CV) between +1.22 V and +1.92 V vs RHE with proceeding cycles. Quasi in situ synchrotron X-ray photoemission spectroscopy (SXPS) results show a gradual upshift of the Fermi level (E-F) for all NixCo3-xO4 after proceeding with the OER electrochemical treatment, while near edge X-ray absorption fine structure spectroscopy (NEXAFS) of the O K-edge as well as the Co and Ni L-edges show no significant changes in the hole state structure near the conduction band minimum as well as the oxidation state of Ni and Co upon the OER treatment. A combination of atomic force microscopy, spectroscopic ellipsometry, X-ray diffraction, and X-ray reflectivity measurements reveals that the surface of NixCo3-xO4 reconstructs and builds up oxygen deficiency upon OER treatment. While the upshift of the Fermi level is disadvantageous for the OER, the emerging oxygen deficiency together with morphology changes lead to an overall increase of OER activity.
引用
收藏
页码:9232 / 9241
页数:10
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