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Quantitative agreements are found by direct comparisons to the thermogravimetry and solid electrolyte coulometry measurements for the strontium-doped lanthanum cobalt iron oxides at different compositions.
In order to understand vacancy clustering and phase stability in oxygen-deficient barium strontium cobalt iron oxide (BSCF), we predict stability and activation energies for oxygen vacancy migration with plane wave Density Functional Theory.
Lanthanum strontium cobalt iron oxide (La0.6Sr0.4Co0.2Fe0.8O3) thin films deposited by pulsed laser deposition on single crystal yttria stabilised zirconia (YSZ) substrates were lithographically patterned to produce geometrically well defined micro-cathodes.
Then, a simple and efficient method is developed for fabricating ternary metal sulfides electrodes based on the electrodeposition of nickel cobalt iron sulfide (Ni-Co-Fe-S) ultrathin nanosheets on the surface of NCAs-NP.
Lanthanum strontium cobalt iron oxide (La0.6Sr0.4Co0.2Fe0.8O3 − δ) thin films were deposited via pulsed laser deposition on single-crystal yttria-stabilised zirconia (YSZ) substrates and lithographically patterned to produce geometrically well-defined micro-cathodes.
In this study, a novel catalyst, cobalt iron carbide nanoparticles encapsulated by nitrogen doped graphene nanosheets, is successfully synthesized through a simple refluxing strategy followed by a post annealing process.
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Colouring elements were cobalt, copper, iron, manganese and gold resulting in blue, green, yellow and violet.
It is found that the electrocrystallization process of cobalt-iron is sensitive to organic additives nature.
It is possible to govern the magnetic properties of the nanoparticle by using iron oxide or cobalt-iron oxide as a core.
The cobalt-iron (CoFe) alloy nanoparticles were embedded in the carbon matrix through pyrolysis of the CoHCF powder.
Herein, we have successfully combined cobalt-iron bimetallic nitrides with N-doped multi-walled carbon nanotubes (Co-Fe-N@MWCNT) as a robust bifunctional material.
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