Novel Pr2-xSrxNi1-xCoxO4±δ (x = 0.25; 0.5; 0.75) oxides with the tetragonal K2NiF4-type structure have been prepared. Room-temperature neutron powder diffraction (NPD) study of x = 0.25 and 0.75 phases together with iodometric titration results have shown the formation of hyperstoichiometric oxide for x = 0.25 (δ = 0.09(2)) and a stoichiometric one for x = 0.75. High-temperature X-ray powder diffraction (HT XRPD) showed substantial anisotropy of the thermal expansion coefficient (TEC) along the a- and c-axis of the crystal structure, which increases with increasing the Co content from TEC(c)/TEC(a) = 2.4 (x = 0.25) to 4.3 (x = 0.75). High-temperature NPD (HT NPD) study of the x = 0.75 sample reveals that a very high expansion of the axial (...
The present work is focused on the study of Pr4Ni3O10+δ as a new cathode material for Solid Oxide Fu...
The present work is focused on the study of Pr4Ni3O10+δ as a new cathode material for Solid Oxide Fu...
The crystal and electronic structures of Pr2-xNiO4+δ (x = 0 - 0.2), as potential materials for solid...
Novel Pr2-xSrxNi1-xCoxO4±δ (x = 0.25; 0.5; 0.75) oxides with the tetragonal K2NiF4-type structure ha...
Novel Pr2-xSrxNi1-xCoxO4±δ (x = 0.25; 0.5; 0.75) oxides with the tetragonal K2NiF4-type structure ha...
Novel Pr2−xSrxNi1−xCoxO4±δ (x = 0.25; 0.5; 0.75) oxides with the tetragonal K2NiF4-type structure ha...
Novel Pr2−xSrxNi1−xCoxO4±δ (x = 0.25; 0.5; 0.75) oxides with the tetragonal K2NiF4-type structure ha...
Novel Pr2−xSrxNi1−xCoxO4±δ (x = 0.25; 0.5; 0.75) oxides with the tetragonal K2NiF4-type structure ha...
The promising SOFC cathode material Pr2NiO4.22 has been studied in situ under a pure oxygen atmosphe...
International audienceThe promising SOFC cathode material Pr2NiO4.22 has been studied in situ under ...
The high-temperature electronic and ionic transport properties, thermal expansion and stability of d...
The praseodymium nickelate PrNiO3-δ was recently identified as one of the decomposition products of ...
Large size and high quality single crystals of Nd2−xSrxNiO4+δ and Pr2−xSrxNiO4+δ, with selected comp...
Pr4Ni3O10-δ is a promising air electrode for solid oxide fuel cells and electrolysers with comparabl...
International audienceThe chemical stability of lanthanide nickelates Ln2NiO4+δ (Ln=La, Pr or Nd) ha...
The present work is focused on the study of Pr4Ni3O10+δ as a new cathode material for Solid Oxide Fu...
The present work is focused on the study of Pr4Ni3O10+δ as a new cathode material for Solid Oxide Fu...
The crystal and electronic structures of Pr2-xNiO4+δ (x = 0 - 0.2), as potential materials for solid...
Novel Pr2-xSrxNi1-xCoxO4±δ (x = 0.25; 0.5; 0.75) oxides with the tetragonal K2NiF4-type structure ha...
Novel Pr2-xSrxNi1-xCoxO4±δ (x = 0.25; 0.5; 0.75) oxides with the tetragonal K2NiF4-type structure ha...
Novel Pr2−xSrxNi1−xCoxO4±δ (x = 0.25; 0.5; 0.75) oxides with the tetragonal K2NiF4-type structure ha...
Novel Pr2−xSrxNi1−xCoxO4±δ (x = 0.25; 0.5; 0.75) oxides with the tetragonal K2NiF4-type structure ha...
Novel Pr2−xSrxNi1−xCoxO4±δ (x = 0.25; 0.5; 0.75) oxides with the tetragonal K2NiF4-type structure ha...
The promising SOFC cathode material Pr2NiO4.22 has been studied in situ under a pure oxygen atmosphe...
International audienceThe promising SOFC cathode material Pr2NiO4.22 has been studied in situ under ...
The high-temperature electronic and ionic transport properties, thermal expansion and stability of d...
The praseodymium nickelate PrNiO3-δ was recently identified as one of the decomposition products of ...
Large size and high quality single crystals of Nd2−xSrxNiO4+δ and Pr2−xSrxNiO4+δ, with selected comp...
Pr4Ni3O10-δ is a promising air electrode for solid oxide fuel cells and electrolysers with comparabl...
International audienceThe chemical stability of lanthanide nickelates Ln2NiO4+δ (Ln=La, Pr or Nd) ha...
The present work is focused on the study of Pr4Ni3O10+δ as a new cathode material for Solid Oxide Fu...
The present work is focused on the study of Pr4Ni3O10+δ as a new cathode material for Solid Oxide Fu...
The crystal and electronic structures of Pr2-xNiO4+δ (x = 0 - 0.2), as potential materials for solid...