AbstractThe Pr2Fe17 compound is a potential candidate for low cost magnetocaloric materials with a significant relative cooling power (RCP) around room temperature (280K). In this work, we present the results of the substitution of dysprosium for praseodymium and of the substitution of aluminum for iron in Pr2Fe17. The polycrystalline Pr2Fe17, Pr1.75Dy0.25Fe17 and Pr2Fe16.75Al0.25 were prepared by arc melting under a high purity argon and homogenized at 1373K to minimize the amount of other possible impurity phases. All the samples crystallize in the rhombohedral Th2Zn17 type structure. The lattice parameter increases with the Al and Dy content. The Curie temperature increases with Dy content and Al content. The magnetic entropy change ΔSm ...
Binary rare-earth (R)-iron intermetallic compounds with Th2Ni17 and Th2Zn17 structure have been exte...
The main drawbacks of rare earth intermetallic magnets are their low Curie temperature (Tc) and magn...
The excellent magnetic entropy change ($\Delta S_T$) in the temperature range of 20 $\sim$ 77 K due ...
AbstractThe Pr2Fe17 compound is a potential candidate for low cost magnetocaloric materials with a s...
The structural, magnetic and magnetocaloric properties of Fe deficient Pr2-xNdxFe17 (x = 0.5, 0.7) a...
"Several pseudo-binary RxR2-x'Fe-17 alloys (with R = Y, Ce, Pr, Gd and Dy) were synthesized with rho...
Several pseudo-binary RxR'2-xFe17 alloys (with R = Y, Ce, Pr, Gd and Dy) were synthesized with rhomb...
"We have synthesized the intermetallic YPrFe17 compound by arc-melting. X-ray and neutron powder dif...
Several pseudo-binary RxR''2-xFe17 alloys (with R Y, Ce, Pr, Gd and Dy) were synthesized with rhombo...
Crystal structure and magnetic and thermomagnetic properties of the Pr2Fe17-xMx compounds with M = T...
Several pseudo-binary RxR2-x'Fe-17 alloys (with R = Y, Ce, Pr, Gd and Dy) were synthesized with rhom...
AbstractA theoretical and experimental investigation on the magnetocaloric properties of the rare ea...
A series of R2Fe17 (R = Sm, Gd, Tb, Dy, Er) have been synthesized. The magnetocaloric effect (MCE) o...
Les composés intermétalliques à base de terres rares et de métaux de transition présentent des propr...
[EN] The structural, magnetic, magnetocaloric (MCE) and thermal properties of seven Fe2P-type Dy6(Fe...
Binary rare-earth (R)-iron intermetallic compounds with Th2Ni17 and Th2Zn17 structure have been exte...
The main drawbacks of rare earth intermetallic magnets are their low Curie temperature (Tc) and magn...
The excellent magnetic entropy change ($\Delta S_T$) in the temperature range of 20 $\sim$ 77 K due ...
AbstractThe Pr2Fe17 compound is a potential candidate for low cost magnetocaloric materials with a s...
The structural, magnetic and magnetocaloric properties of Fe deficient Pr2-xNdxFe17 (x = 0.5, 0.7) a...
"Several pseudo-binary RxR2-x'Fe-17 alloys (with R = Y, Ce, Pr, Gd and Dy) were synthesized with rho...
Several pseudo-binary RxR'2-xFe17 alloys (with R = Y, Ce, Pr, Gd and Dy) were synthesized with rhomb...
"We have synthesized the intermetallic YPrFe17 compound by arc-melting. X-ray and neutron powder dif...
Several pseudo-binary RxR''2-xFe17 alloys (with R Y, Ce, Pr, Gd and Dy) were synthesized with rhombo...
Crystal structure and magnetic and thermomagnetic properties of the Pr2Fe17-xMx compounds with M = T...
Several pseudo-binary RxR2-x'Fe-17 alloys (with R = Y, Ce, Pr, Gd and Dy) were synthesized with rhom...
AbstractA theoretical and experimental investigation on the magnetocaloric properties of the rare ea...
A series of R2Fe17 (R = Sm, Gd, Tb, Dy, Er) have been synthesized. The magnetocaloric effect (MCE) o...
Les composés intermétalliques à base de terres rares et de métaux de transition présentent des propr...
[EN] The structural, magnetic, magnetocaloric (MCE) and thermal properties of seven Fe2P-type Dy6(Fe...
Binary rare-earth (R)-iron intermetallic compounds with Th2Ni17 and Th2Zn17 structure have been exte...
The main drawbacks of rare earth intermetallic magnets are their low Curie temperature (Tc) and magn...
The excellent magnetic entropy change ($\Delta S_T$) in the temperature range of 20 $\sim$ 77 K due ...