First-principles prediction of half metallic-ferromagnetism in La0.25Sr0.75Sn0.4In0.25Ru0.35O3 and enhanced experimental electrical and magnetic behaviours
Samira Barouni,
Ameni Brahmia,
Hanen Chaker
et al.
Abstract:Through co-doping of SrSnO3, a mechanochemical synthesis method produced La0.25Sr0.75Sn0.4In0.25Ru0.35O3, a nanoscale semiconducting perovskite with ferromagnetic properties, ideal for optoelectronics and spintronics.
A new double perovskite phase, Sr2(Sn0.33Sb0.33In0.33)2O6, was successfully synthesized via a solid-state reaction and comprehensively characterized using both experimental and theoretical techniques.
A new double perovskite phase, Sr2(Sn0.33Sb0.33In0.33)2O6, was successfully synthesized via a solid-state reaction and comprehensively characterized using both experimental and theoretical techniques.
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