Abstract: The possibility to control oxygen transport in one of the most promising solid oxide fuel cell cathode materials, La0.6Sr0.4CoO3−δ, by controlling lattice strain raises questions regarding the contribution of atomic scale effects. Here, high-resolution transmission electron microscopy revealed the different atomic structures in La0.6Sr0.4CoO3−δ thin films grown under tensile and compressive strain conditions. The atomic structure of the tensile-strained film indicated significant local concentration of the oxygen vacancies, with the average value of the oxygen non-stoichiometry being much larger than for the compressive-strained film. In addition to the vacancy concentration differences that are measured by isotope exchange depth ...
In-depth probing of the surface electronic:structure on solid oxide fuel cell (SOFC) cathodes, consi...
<p>This data is cross-posted here:</p> <p>https://materialsdata.nist.gov/dspace/xmlui/handle/11256/...
Ionic transport-related phenomena are of primary importance for the development and miniaturization ...
Abstract: The possibility to control oxygen transport in one of the most promising solid oxide fuel ...
AbstractThe possibility to control oxygen transport in one of the most promising solid oxide fuel ce...
Understanding the effects of lattice strain on oxygen surface and diffusion kinetics in oxides is a ...
The influence of lattice strain on the oxygen exchange kinetics and diffusion in oxides was investig...
Understanding the effects of lattice strain on oxygen surface and diffusion kinetics in oxides is a ...
Epitaxial strain has been shown to produce dramatic changes to the orbital structure in transition m...
Effects of strain on the surface cation chemistry and the electronic structure are important to unde...
Effects of strain on the surface cation chemistry and the electronic structure are important to unde...
Oxygen defect control has long been considered an important route to functionalizing complex oxide f...
We report on the mechanistic effects of epitaxial strain on the surface chemistry, in particular the...
We report on the mechanistic effects of epitaxial strain on the surface chemistry, in particular the...
The authors would like to thank P. Yudin for valuable discussions, N. Nepomniashchaia for VASE studi...
In-depth probing of the surface electronic:structure on solid oxide fuel cell (SOFC) cathodes, consi...
<p>This data is cross-posted here:</p> <p>https://materialsdata.nist.gov/dspace/xmlui/handle/11256/...
Ionic transport-related phenomena are of primary importance for the development and miniaturization ...
Abstract: The possibility to control oxygen transport in one of the most promising solid oxide fuel ...
AbstractThe possibility to control oxygen transport in one of the most promising solid oxide fuel ce...
Understanding the effects of lattice strain on oxygen surface and diffusion kinetics in oxides is a ...
The influence of lattice strain on the oxygen exchange kinetics and diffusion in oxides was investig...
Understanding the effects of lattice strain on oxygen surface and diffusion kinetics in oxides is a ...
Epitaxial strain has been shown to produce dramatic changes to the orbital structure in transition m...
Effects of strain on the surface cation chemistry and the electronic structure are important to unde...
Effects of strain on the surface cation chemistry and the electronic structure are important to unde...
Oxygen defect control has long been considered an important route to functionalizing complex oxide f...
We report on the mechanistic effects of epitaxial strain on the surface chemistry, in particular the...
We report on the mechanistic effects of epitaxial strain on the surface chemistry, in particular the...
The authors would like to thank P. Yudin for valuable discussions, N. Nepomniashchaia for VASE studi...
In-depth probing of the surface electronic:structure on solid oxide fuel cell (SOFC) cathodes, consi...
<p>This data is cross-posted here:</p> <p>https://materialsdata.nist.gov/dspace/xmlui/handle/11256/...
Ionic transport-related phenomena are of primary importance for the development and miniaturization ...