Here, we report synthesis and investigations of bulk and nano-sized La(0.7−x)EuxBa0.3MnO3 (x ≤ 0.4) compounds. The study presents a comparison between the structural and magnetic properties of the nano- and polycrystalline manganites La(0.7−x)EuxBa0.3MnO3, which are potential magnetocaloric materials to be used in domestic magnetic refrigeration close to room temperature. The parent compound, La0.7Ba0.3MnO3, has Curie temperature TC = 340 K. The magnetocaloric effect is at its maximum around TC. To reduce this temperature below 300 K, we partially replaced the La ions with Eu ions. A solid-state reaction was used to prepare bulk polycrystalline materials, and a sol-gel method was used for the nanoparticles. X-ray diffraction was used for th...
The growth of chemically stable magnetic materials showing a magnetic transition near room temperatu...
The growth of chemically stable magnetic materials showing a magnetic transition near room temperatu...
AbstractStructural, magnetic and magnetocaloric effects of powder perovskite manganites La0.7M0.2M′0...
La0.7Ca0.3MnO3 samples were prepared in nano- and polycrystalline forms by the sol-gel and solid sta...
$La_{0.7}Ca_{0.3}MnO_3$ samples were prepared in nano- and polycrystalline forms by sol-gel and soli...
peer reviewedStructure, magnetic and magnetocaloric properties of poly- and nanocrystalline La0.5Ca0...
Structure, magnetic and magnetocaloric properties of poly- and nanocrystalline La0.5Ca0.5MnO3 mangan...
Sem informaçãoPerovskite manganite La0.5Ca0.5-xxMnO3 (LCMO) nanomaterials were elaborated using the ...
We have synthesized La 0.7 Nd x Ba (0.3-x) MnO 3 (x = 0, 0.05, 0.1) perovskite manganites by using s...
La0.7Ca0.3MnO3 samples were prepared in nano- and polycrystalline forms by the sol-gel and solid sta...
International audiencePerovskite manganite La0.5Ca0.5-xxMnO3 (LCMO) nanomaterials were elaborated us...
We demonstrate the possibility of enhancing both the magnetocaloric effect MCE and refrigerant capa...
peer reviewedPoly- and nanocrystalline manganite composites (1/3)La0.7Ca0.3MnO3 and / (2/3)La0.8Sr0...
In this paper, the magnetic properties and magnetocaloric effect (MCE) of La0.7(Ca1−xAgx)0.3MnO3 (x ...
International audienceWe have investigated the magnetocaloric properties of Ln(0.67)Ba(0.33)Mn(1-x)F...
The growth of chemically stable magnetic materials showing a magnetic transition near room temperatu...
The growth of chemically stable magnetic materials showing a magnetic transition near room temperatu...
AbstractStructural, magnetic and magnetocaloric effects of powder perovskite manganites La0.7M0.2M′0...
La0.7Ca0.3MnO3 samples were prepared in nano- and polycrystalline forms by the sol-gel and solid sta...
$La_{0.7}Ca_{0.3}MnO_3$ samples were prepared in nano- and polycrystalline forms by sol-gel and soli...
peer reviewedStructure, magnetic and magnetocaloric properties of poly- and nanocrystalline La0.5Ca0...
Structure, magnetic and magnetocaloric properties of poly- and nanocrystalline La0.5Ca0.5MnO3 mangan...
Sem informaçãoPerovskite manganite La0.5Ca0.5-xxMnO3 (LCMO) nanomaterials were elaborated using the ...
We have synthesized La 0.7 Nd x Ba (0.3-x) MnO 3 (x = 0, 0.05, 0.1) perovskite manganites by using s...
La0.7Ca0.3MnO3 samples were prepared in nano- and polycrystalline forms by the sol-gel and solid sta...
International audiencePerovskite manganite La0.5Ca0.5-xxMnO3 (LCMO) nanomaterials were elaborated us...
We demonstrate the possibility of enhancing both the magnetocaloric effect MCE and refrigerant capa...
peer reviewedPoly- and nanocrystalline manganite composites (1/3)La0.7Ca0.3MnO3 and / (2/3)La0.8Sr0...
In this paper, the magnetic properties and magnetocaloric effect (MCE) of La0.7(Ca1−xAgx)0.3MnO3 (x ...
International audienceWe have investigated the magnetocaloric properties of Ln(0.67)Ba(0.33)Mn(1-x)F...
The growth of chemically stable magnetic materials showing a magnetic transition near room temperatu...
The growth of chemically stable magnetic materials showing a magnetic transition near room temperatu...
AbstractStructural, magnetic and magnetocaloric effects of powder perovskite manganites La0.7M0.2M′0...