Tuning the structural, magnetic and optical properties of EuCrO3 orthochromites through Dy3+ substitution
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Abstract
In this study, EuCrO3 (ECO) and Eu0.9Dy0.10CrO3 (EDCO) rare-earth orthochromite compositions were
synthesized through the traditional solid-state reaction technique. A comprehensive investigation was conducted to
analyse the effect of the substitution of 10 wt% Dy3? ions on the structural, optical and magnetic properties of EuCrO3.
The X-ray diffraction results along with Rietveld refinement confirm the monophasic nature with an orthorhombic
distorted perovskite structure for both compositions. Field emission scanning electron microscopy reveals polycrystalline
microstructures with average grain sizes ranging from 269 to 327 nm for both compounds. The optical bandgap is
evaluated by Tauc’s relation and is observed to slightly increase from 2.24 to 2.33 eV with Dy3? ions substitution. Optical
parameters, including skin depth, extinction coefficient, refractive index and optical conductivity are determined and their
variations with Dy substitution are analysed. Temperature-dependent magnetic analysis reveals a Ne´el temperature (TN)of
177 K in EDCO composition, lower than that of pristine EuCrO3 (TN *181 K). The magnetocaloric effect of the EDCO
compound demonstrates a magnetic entropy change (DS) and relative cooling power of–0.27 J kg-1 K and 4.4 J kg-1,
respectively, near TN under the application of 7 Tesla field. This study highlights the tunability of EuCrO3 properties
through Dy ion substitution for customized applications.