Add time:07/18/2019 Source:sciencedirect.com
A simple, solvothermal method has been used to synthesize Gadolinium Oxide (cas 11129-31-0) nanoparticles with 3 wt.% terbium doping (3% Tb-doped Gd2O3). The particles have cubic crystal structure (Space group Ia-3, No. 206). The mean particle size estimated from transmission electron microscopy is ∼ 55 nm and the crystallite size estimated from powder X-ray diffraction data is ∼28 nm. The sample, 3% Tb-doped Gd2O3, remains paramagnetic from 300 K down to 5 K. Magnetocaloric effect (MCE) is estimated in terms of isothermal magnetic entropy change (ΔSm) at low temperatures. The maximum value of ΔSm at 6 K for 70 kOe field change is found to be about -20.9 Jkg-1K-1. This value is quite large and is comparable with that of pristine nanosized Gd2O3. Therefore rare earth-doped Gd2O3 nanostructures could also be useful in low temperature magnetic refrigeration.
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