Lanthanum tungstate (La6 WO12 ) is a promising material for the development of hydrogen separation membranes, proton ceramic electrolyzer cells and protonic ceramic fuel cells due to its interesting transport properties and stability under different operation conditions. In order to improve the hydrogen transport through the La6 WO12 membranes, thin membranes should be manufactured. This work is based on the industrial production of La5.5 WO11.25−δ (LWO) powder by spray drying and the manufacturing of thin membranes by low-pressure plasma spraying (LPPS-TF) technique. LPPS-TF allows the production of dense thin films of high quality in an industrial scale. The powders produced by spray drying were morphological and electrochemically charact...
A higher density of large-angle grain boundaries in palladium membranes promotes hydrogen diffusion ...
This thesis is devoted to developing the suspension plasma spraying process for fabricating ceramic ...
[EN] La0.58Sr0.4Co0.2Fe0.8O3- delta (LSCF) deposited on a metallic porous support by plasma spray-ph...
Lanthanum tungstate (La6WO12) is a promising material for the development of hydrogen separation mem...
[EN] Lanthanum tungstate (La6WO12) is a promising material for the development of hydrogen separatio...
Mixed protonic and electronic conducting ceramic membranes offer a high potential to separate pure h...
Abstract: Mixed protonic and electronic conducting ceramic membranes offer a high potential to separ...
In the context of energy conversion efficiency and decreasing greenhouse gas emissions from power ge...
This work presents a systematic study of the lanthanum tungstate (LaWO) ceramic layers formation on ...
The aim of the present work is to evaluate the influence of La6W2O15 secondary phase on the properti...
AbstractLa5.4WO12−δ (LaWO) is a promising membrane candidate for a variety of H2-related application...
Hydrogen separation membranes offer a promising possibility to separate pure hydrogen from gas mixtu...
Asymmetric tubular ceramic–ceramic (cercer) membranes based on La27W3.5Mo1.5O55.5−δ-La0.87Sr0.13CrO3...
[EN] This work presents the preparation and characterization of the hydrogen permeation of a mixed p...
This paper reports the preparation and characterization of thin-film (4–5 μm thick) Pd–Ag metallic s...
A higher density of large-angle grain boundaries in palladium membranes promotes hydrogen diffusion ...
This thesis is devoted to developing the suspension plasma spraying process for fabricating ceramic ...
[EN] La0.58Sr0.4Co0.2Fe0.8O3- delta (LSCF) deposited on a metallic porous support by plasma spray-ph...
Lanthanum tungstate (La6WO12) is a promising material for the development of hydrogen separation mem...
[EN] Lanthanum tungstate (La6WO12) is a promising material for the development of hydrogen separatio...
Mixed protonic and electronic conducting ceramic membranes offer a high potential to separate pure h...
Abstract: Mixed protonic and electronic conducting ceramic membranes offer a high potential to separ...
In the context of energy conversion efficiency and decreasing greenhouse gas emissions from power ge...
This work presents a systematic study of the lanthanum tungstate (LaWO) ceramic layers formation on ...
The aim of the present work is to evaluate the influence of La6W2O15 secondary phase on the properti...
AbstractLa5.4WO12−δ (LaWO) is a promising membrane candidate for a variety of H2-related application...
Hydrogen separation membranes offer a promising possibility to separate pure hydrogen from gas mixtu...
Asymmetric tubular ceramic–ceramic (cercer) membranes based on La27W3.5Mo1.5O55.5−δ-La0.87Sr0.13CrO3...
[EN] This work presents the preparation and characterization of the hydrogen permeation of a mixed p...
This paper reports the preparation and characterization of thin-film (4–5 μm thick) Pd–Ag metallic s...
A higher density of large-angle grain boundaries in palladium membranes promotes hydrogen diffusion ...
This thesis is devoted to developing the suspension plasma spraying process for fabricating ceramic ...
[EN] La0.58Sr0.4Co0.2Fe0.8O3- delta (LSCF) deposited on a metallic porous support by plasma spray-ph...