Cation segregation on perovskite oxide surfaces affects vastly the oxygen reduction activity and stability of solid oxide fuel cell (SOFC) cathodes. A unified theory that explains the physical origins of this phenomenon is therefore needed for designing cathode materials with optimal surface chemistry. We quantitatively assessed the elastic and electrostatic interactions of the dopant with the surrounding lattice as the key driving forces for segregation on model perovskite compounds, LnMnO<sub>3</sub> (host cation Ln = La, Sm). Our approach combines surface chemical analysis with X-ray photoelectron and Auger electron spectroscopy on model dense thin films and computational analysis with density functional theory (DFT) calculations and ana...
Segregation and phase separation of aliovalent dopants on perovskite oxide (ABO3) surfaces are detri...
Among the phenomena related to the surface rearrangement of cations in perovskite-based oxides, A-si...
Stable composition and catalytic activity of surfaces are among the key requirements for materials e...
Cation segregation on perovskite oxide surfaces affects vastly the oxygen reduction activity and sta...
The slow rate of oxygen reduction reaction (ORR) at the cathode side has been considered as a scient...
Segregation of aliovalent dopant cations is a common degradation pathway on perovskite oxide surface...
Strontium segregation at perovskite surfaces deteriorates the oxygen reduction reaction kinetics of ...
Based on systematic first principles calculations, we investigate Sr surface segregation (SSS) in La...
Perovskite oxides used in heterogeneous catalysis and electrocatalysis are tuned by substitutional d...
We investigated the effects of annealing and A-site stoichiometry on the surface heterostructures at...
In this paper, we perform a comparative study based on ab initio modeling for perovskite ABO[subscri...
Effects of strain on the surface cation chemistry and the electronic structure are important to unde...
Surface cation segregation, strontium (Sr) in particular, has been considered as one of crucial barr...
We report on the mechanistic effects of epitaxial strain on the surface chemistry, in particular the...
Effects of strain on the surface cation chemistry and the electronic structure are important to unde...
Segregation and phase separation of aliovalent dopants on perovskite oxide (ABO3) surfaces are detri...
Among the phenomena related to the surface rearrangement of cations in perovskite-based oxides, A-si...
Stable composition and catalytic activity of surfaces are among the key requirements for materials e...
Cation segregation on perovskite oxide surfaces affects vastly the oxygen reduction activity and sta...
The slow rate of oxygen reduction reaction (ORR) at the cathode side has been considered as a scient...
Segregation of aliovalent dopant cations is a common degradation pathway on perovskite oxide surface...
Strontium segregation at perovskite surfaces deteriorates the oxygen reduction reaction kinetics of ...
Based on systematic first principles calculations, we investigate Sr surface segregation (SSS) in La...
Perovskite oxides used in heterogeneous catalysis and electrocatalysis are tuned by substitutional d...
We investigated the effects of annealing and A-site stoichiometry on the surface heterostructures at...
In this paper, we perform a comparative study based on ab initio modeling for perovskite ABO[subscri...
Effects of strain on the surface cation chemistry and the electronic structure are important to unde...
Surface cation segregation, strontium (Sr) in particular, has been considered as one of crucial barr...
We report on the mechanistic effects of epitaxial strain on the surface chemistry, in particular the...
Effects of strain on the surface cation chemistry and the electronic structure are important to unde...
Segregation and phase separation of aliovalent dopants on perovskite oxide (ABO3) surfaces are detri...
Among the phenomena related to the surface rearrangement of cations in perovskite-based oxides, A-si...
Stable composition and catalytic activity of surfaces are among the key requirements for materials e...