Chemomechanical coupling is a hallmark of the functional oxides that are used widely for energy conversion and storage applications including solid oxide fuel cells (SOFCs). These oxides rely on the presence of oxygen vacancies to enable important properties including ionic conductivity and gas exchange reactivity. However, such defects can also facilitate chemical expansion, or coupling between material volume and defect content. Such chemomechanical coupling is particularly relevant with the recent interest in thin film SOFCs which have the potential to decrease operating temperatures and enable portable applications. Thin films present a particular challenge for modelling, as experimental results indicate that film defect chemistry can d...
Please consider the manuscript “Probing of elastic straining effect on oxygen vacancies dissociat...
In this paper, we focus on the effect of processing-dependent lattice strain on oxygen ion conductiv...
The chemomechanical and electrical properties of (Pr,Ce)O2-δ thin films were studied between 30 and ...
Chemomechanical coupling is a hallmark of the functional oxides that are used widely for energy conv...
Thin film non-stoichiometric oxides enable many high temperature applications including solid oxide ...
In this work a novel continuum model informed by density functional theory (DFT) simulations is pres...
The aim of this work is to investigate: enhancement of the oxygen reduction reaction at the PrCoO3-δ...
Elastic strain is being increasingly employed to enhance the catalytic properties of mixed ion-elect...
Elastic strain is being increasingly employed to enhance the catalytic properties of mixed ion-elect...
Since oxide materials like Sr2FeMoO6 are usually applied as thin films, we studied the effect of bia...
Oxides and oxide-derived materials find ubiquitous applications in many industrial applications. The...
Perovskites based upon substituted LaCoO3-δ are the state-of-the-art materials for a variety of diff...
Lattice defects significantly affect the mechanical properties of crystalline metal oxides. The mate...
The effect of oxygen vacancies on the elastic properties of zinc oxide (ZnO) is examined using first...
The point defect induced strain and stress in thin films was analyzed using in situ wafer curvature ...
Please consider the manuscript “Probing of elastic straining effect on oxygen vacancies dissociat...
In this paper, we focus on the effect of processing-dependent lattice strain on oxygen ion conductiv...
The chemomechanical and electrical properties of (Pr,Ce)O2-δ thin films were studied between 30 and ...
Chemomechanical coupling is a hallmark of the functional oxides that are used widely for energy conv...
Thin film non-stoichiometric oxides enable many high temperature applications including solid oxide ...
In this work a novel continuum model informed by density functional theory (DFT) simulations is pres...
The aim of this work is to investigate: enhancement of the oxygen reduction reaction at the PrCoO3-δ...
Elastic strain is being increasingly employed to enhance the catalytic properties of mixed ion-elect...
Elastic strain is being increasingly employed to enhance the catalytic properties of mixed ion-elect...
Since oxide materials like Sr2FeMoO6 are usually applied as thin films, we studied the effect of bia...
Oxides and oxide-derived materials find ubiquitous applications in many industrial applications. The...
Perovskites based upon substituted LaCoO3-δ are the state-of-the-art materials for a variety of diff...
Lattice defects significantly affect the mechanical properties of crystalline metal oxides. The mate...
The effect of oxygen vacancies on the elastic properties of zinc oxide (ZnO) is examined using first...
The point defect induced strain and stress in thin films was analyzed using in situ wafer curvature ...
Please consider the manuscript “Probing of elastic straining effect on oxygen vacancies dissociat...
In this paper, we focus on the effect of processing-dependent lattice strain on oxygen ion conductiv...
The chemomechanical and electrical properties of (Pr,Ce)O2-δ thin films were studied between 30 and ...