Manganites with the formula La1-xCaxMnO3 for 0.2 < x < 0.5 undergo a magnetic field driven transition from a paramagnetic to ferromagnetic state, which is accompanied by changes in the lattice and electronic structure. An isotropic expansion of the La0.75Ca0.25MnO3 cell at the phase transition has been observed experimentally. It is expected that there will be a large entropy change at the transition due to its first order nature. Doped lanthanum manganite (LMO) is therefore of interest as the active component in a magnetocaloric cooling device. However, the maximum obtained value for the entropy change in Ca-doped manganites merely reaches a moderate value in the field of a permanent magnet. The present theoretical work aims to shed light ...
A systematic study of the magnetocaloric effect in La0.7Ca0.15Sr0.15MnO3 perovskite has been perform...
La0.4Pr0.3Ca0.1Sr0.2MnO3 has been investigated as a potential candidate for room temperature magneti...
The magnetic properties and magnetocaloric effect (MCE) in electron-doped Sm0.09Ca0.91MnO3 nanomanga...
Manganites with the formula La1−xCaxMnO3 for 0.2 < x < 0.5 undergo a magnetic field driven transiti...
Manganites with the formula La1−x Ca x MnO3 for 0.2 < x < 0.5 undergo a magnetic field driven tr...
Perovskite oxides such as manganites are considered to be strong candidates for appli- cations in m...
In this paper, the magnetic properties and magnetocaloric effect (MCE) of La0.7(Ca1−xAgx)0.3MnO3 (x ...
International audienceThe magnetic phase transition and the magnetic entropy change (−ΔSM) in the La...
This thesis investigates two challenges associated with the use of manganites for magnetocaloric ap...
The influence of first and second order magnetic phase transitions on the magnetocaloric effect (MCE...
Magnetic properties and the magnetocaloric effect (MCE) have been investigated in La0.7Ca0.3MnO3 sin...
The magnetocaloric properties of an electron-doped manganite Ca0.88Dy0.12MnO3 have been studied in d...
A study of the magnetocaloric properties of La$\text{}_{1-x-y}$Y$\text{}_{y}$Ca$\text{}_{x}$MnO$\tex...
We investigate the structural characterization, electronic structure, magnetic, and magnetocaloric p...
La0.4Pr0.3Ca0.1Sr0.2MnO3 has been investigated as a potential candidate for room temperature magneti...
A systematic study of the magnetocaloric effect in La0.7Ca0.15Sr0.15MnO3 perovskite has been perform...
La0.4Pr0.3Ca0.1Sr0.2MnO3 has been investigated as a potential candidate for room temperature magneti...
The magnetic properties and magnetocaloric effect (MCE) in electron-doped Sm0.09Ca0.91MnO3 nanomanga...
Manganites with the formula La1−xCaxMnO3 for 0.2 < x < 0.5 undergo a magnetic field driven transiti...
Manganites with the formula La1−x Ca x MnO3 for 0.2 < x < 0.5 undergo a magnetic field driven tr...
Perovskite oxides such as manganites are considered to be strong candidates for appli- cations in m...
In this paper, the magnetic properties and magnetocaloric effect (MCE) of La0.7(Ca1−xAgx)0.3MnO3 (x ...
International audienceThe magnetic phase transition and the magnetic entropy change (−ΔSM) in the La...
This thesis investigates two challenges associated with the use of manganites for magnetocaloric ap...
The influence of first and second order magnetic phase transitions on the magnetocaloric effect (MCE...
Magnetic properties and the magnetocaloric effect (MCE) have been investigated in La0.7Ca0.3MnO3 sin...
The magnetocaloric properties of an electron-doped manganite Ca0.88Dy0.12MnO3 have been studied in d...
A study of the magnetocaloric properties of La$\text{}_{1-x-y}$Y$\text{}_{y}$Ca$\text{}_{x}$MnO$\tex...
We investigate the structural characterization, electronic structure, magnetic, and magnetocaloric p...
La0.4Pr0.3Ca0.1Sr0.2MnO3 has been investigated as a potential candidate for room temperature magneti...
A systematic study of the magnetocaloric effect in La0.7Ca0.15Sr0.15MnO3 perovskite has been perform...
La0.4Pr0.3Ca0.1Sr0.2MnO3 has been investigated as a potential candidate for room temperature magneti...
The magnetic properties and magnetocaloric effect (MCE) in electron-doped Sm0.09Ca0.91MnO3 nanomanga...