Nanocomposite consisting of Gd₂O₃ nanoparticles embedded in periodical porous silica matrix was investigated with respect to its magnetocaloric properties. Series of field (up to 5 T) dependence of magnetization data were recorded in temperature range 2-52 K. The data were subsequently processed employing Maxwell relation in order to calculate magnetic entropy change (Δ S_M) of the system. Examined nanocomposite exhibited reasonably high value of Δ S_M ≈ 29 J/(kg K) at maximal field change 5 T at the temperature of 2 K which suggests that this material could be feasible for cryomagnetic refrigeration applications
The influence of the application of a magnetic field (H) on the temperature (T) dependence of heat c...
Caloric materials have attracted significant interest as replacements for conventional refrigeration...
In this work, the field dependence of the magnetocaloric effect of Gd bulk samples has been enhanced...
The magnetocaloric properties of a composite material consisting of isolated GdO nanoparticles with ...
The magnetocaloric effect (MCE) of hybrid nanostructures consisting of fine gadolinium oxi...
The magnetocaloric effect (MCE) of hybrid nanostructures consisting of fine gadolinium oxide (Gd2O3)...
The magnetic behavior, magnetocaloric effect (MCE), and refrigeration capacity of the Gd60Al10Mn30 m...
The Gd-Fe-Al amorphous/nanocrystalline composites were successfully designed and obtained with both ...
Materials exhibiting a large magnetocaloric effect (MCE) at or near room temperature are critical fo...
The enhanced low-field magnetocaloric effect was investigated for double perovskite Sr2FeMoO6 - silv...
A novel class of nanocrystalline/amorphous Gd3Ni/Gd65Ni35 composite microwires were created directly...
Amorphous Gd65Mn25Si10 as well as crystalline Gd have technologically significant Curie temperature ...
Magnetic refrigeration is a cooling technology based on the magnetocaloric effect, which has greater...
The Gd(95)Pe(2.8)Al(2.2) amorphous/nanocrystalline composite was obtained by melt spinning. A full w...
The correlation between structural and magnetic properties of GdAl2, focusing on the role played by ...
The influence of the application of a magnetic field (H) on the temperature (T) dependence of heat c...
Caloric materials have attracted significant interest as replacements for conventional refrigeration...
In this work, the field dependence of the magnetocaloric effect of Gd bulk samples has been enhanced...
The magnetocaloric properties of a composite material consisting of isolated GdO nanoparticles with ...
The magnetocaloric effect (MCE) of hybrid nanostructures consisting of fine gadolinium oxi...
The magnetocaloric effect (MCE) of hybrid nanostructures consisting of fine gadolinium oxide (Gd2O3)...
The magnetic behavior, magnetocaloric effect (MCE), and refrigeration capacity of the Gd60Al10Mn30 m...
The Gd-Fe-Al amorphous/nanocrystalline composites were successfully designed and obtained with both ...
Materials exhibiting a large magnetocaloric effect (MCE) at or near room temperature are critical fo...
The enhanced low-field magnetocaloric effect was investigated for double perovskite Sr2FeMoO6 - silv...
A novel class of nanocrystalline/amorphous Gd3Ni/Gd65Ni35 composite microwires were created directly...
Amorphous Gd65Mn25Si10 as well as crystalline Gd have technologically significant Curie temperature ...
Magnetic refrigeration is a cooling technology based on the magnetocaloric effect, which has greater...
The Gd(95)Pe(2.8)Al(2.2) amorphous/nanocrystalline composite was obtained by melt spinning. A full w...
The correlation between structural and magnetic properties of GdAl2, focusing on the role played by ...
The influence of the application of a magnetic field (H) on the temperature (T) dependence of heat c...
Caloric materials have attracted significant interest as replacements for conventional refrigeration...
In this work, the field dependence of the magnetocaloric effect of Gd bulk samples has been enhanced...