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- W2094328782 abstract "The structure and magnetocaloric properties of the Fe-doped HoTiGe compound were investigated by means of scanning electron microscopy (SEM), energy dispersive spectroscopy, x-ray diffraction, magnetometry, and calorimetry. As with the early studies on the undoped compound, the Fe-containing alloy exhibited an antiferromagnetic-to-paramagnetic transition and a magnetocaloric effect peak at 90K. The magnetization (M) versus temperature (T) data showed peaks at 10 and 90K, while M versus field (H) curves showed the presence of a field-induced transition for all T<120K; additionally, for all T<60K, open hysteresis loops at the magnetic transitions were observed. XRD measurements between 10 and 60K under various magnetic fields up to 3184kA∕m (40kOe) showed that the hysteresis was not accompanied by any change in crystallography. The magnetization derived entropy change −ΔSm vs T plot also showed the presence of two peaks, at 20 and 90K; but below 15K, −ΔSm increased steeply with decreasing temperature. It is believed that the minor phases in the Fe-doped alloy give rise to the magnetization-derived −ΔSm peak at 20K. The heat-capacity-derived −ΔSm vs T plot for the Fe-doped alloy also showed the presence of two peaks at 20 and 90K. However, the heat-capacity-derived −ΔSm did not show a rapid rise with decreasing temperature below 15K." @default.
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- W2094328782 date "2006-04-15" @default.
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- W2094328782 title "Structure and magnetocaloric properties of the Fe-doped HoTiGe alloy" @default.
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- W2094328782 doi "https://doi.org/10.1063/1.2159396" @default.
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