Strong coupling between the chemical composition and crystal lattice dimensions resulting in the contraction or expansion of a material upon change of its chemical composition is known as chemical expansion or chemical strain. This phenomenon significantly influences the performance of oxide materials in different energy conversion and storage devices. In many such applications, e.g., in oxygen-permeating membranes or solid oxide fuel cells (SOFCs), the materials are subject to significant in situ variation of their chemical composition, which is accompanied by large volume changes. This may often be detrimental to the operation of the electrochemical device. Not only is chemo-mechanical coupling crucial for various practical applications, ...
Lattice oxygen activity plays a dominant role in balancing discharge capacity and performance decay ...
Understanding the effects of lattice strain on oxygen surface and diffusion kinetics in oxides is a ...
In this paper, we focus on the effect of processing-dependent lattice strain on oxygen ion conductiv...
Pseudo-cubic perovskites based upon substituted oxides RBO3-δ as well as double perovskites RBaB2O6-...
Elastic strain engineering offers a new route to enable high-performance catalysts, electrochemical ...
Perovskites based upon substituted LaCoO3-δ are the state-of-the-art materials for a variety of diff...
Please consider the manuscript “Probing of elastic straining effect on oxygen vacancies dissociat...
International audienceThis paper suggests a macroscopic model describing the thermo-chemo-mechanical...
Perovskites based upon substituted LaCoO 3-δ are the state-of-the-art materials for a variety of dif...
The aim of this work is to investigate: enhancement of the oxygen reduction reaction at the PrCoO3-δ...
Thin film non-stoichiometric oxides enable many high temperature applications including solid oxide ...
AbstractThe possibility to control oxygen transport in one of the most promising solid oxide fuel ce...
Abstract: The possibility to control oxygen transport in one of the most promising solid oxide fuel ...
International audienceThis study presents the relevant aspects of the approach developed at Institut...
Understanding the effects of lattice strain on oxygen surface and diffusion kinetics in oxides is a ...
Lattice oxygen activity plays a dominant role in balancing discharge capacity and performance decay ...
Understanding the effects of lattice strain on oxygen surface and diffusion kinetics in oxides is a ...
In this paper, we focus on the effect of processing-dependent lattice strain on oxygen ion conductiv...
Pseudo-cubic perovskites based upon substituted oxides RBO3-δ as well as double perovskites RBaB2O6-...
Elastic strain engineering offers a new route to enable high-performance catalysts, electrochemical ...
Perovskites based upon substituted LaCoO3-δ are the state-of-the-art materials for a variety of diff...
Please consider the manuscript “Probing of elastic straining effect on oxygen vacancies dissociat...
International audienceThis paper suggests a macroscopic model describing the thermo-chemo-mechanical...
Perovskites based upon substituted LaCoO 3-δ are the state-of-the-art materials for a variety of dif...
The aim of this work is to investigate: enhancement of the oxygen reduction reaction at the PrCoO3-δ...
Thin film non-stoichiometric oxides enable many high temperature applications including solid oxide ...
AbstractThe possibility to control oxygen transport in one of the most promising solid oxide fuel ce...
Abstract: The possibility to control oxygen transport in one of the most promising solid oxide fuel ...
International audienceThis study presents the relevant aspects of the approach developed at Institut...
Understanding the effects of lattice strain on oxygen surface and diffusion kinetics in oxides is a ...
Lattice oxygen activity plays a dominant role in balancing discharge capacity and performance decay ...
Understanding the effects of lattice strain on oxygen surface and diffusion kinetics in oxides is a ...
In this paper, we focus on the effect of processing-dependent lattice strain on oxygen ion conductiv...