Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7993214 | Journal of Alloys and Compounds | 2018 | 8 Pages |
Abstract
In this work, we explore the influence of A-site ionic disorder (Ï2) on magnetocaloric properties in relatively larger bandwidth manganite systems like, well known La0.7Sr0.3MnO3 compound. For the study, three isoelectronic manganites with same A-site ionic radius (ãrAã=1.24Ã
) i.e. La0.7Sr0.3MnO3(Ï2=1.85Ã10â3), Pr0.7Sr0.14Ba0.16MnO3(Ï2=1.17Ã10â2) and Nd0.7Sr0.07Ba0.23MnO3(Ï2=1.66Ã10â2) samples have been prepared. Magnetic measurements reveal that, upon increasing Ï2 from 1.85Ã10â3 to 1.66Ã10â2, ferromagnetic double exchange interaction diminishes and as a result, ferromagnetic ordering temperature (TC) decreases from 360â¯K to 100â¯K. Accordingly, the magnetic entropy change (âÎSM) has also been found to decrease from 4.6â¯J/kg-K to 4.1â¯J/kg-K on the application of 70â¯kOe magnetic field. However, for Ï2=1.66Ã10â2, the value of âÎSM=5.7J/kg is relatively larger compared to the other two values of âÎSM. Additionally, increased Ï2 (1.85Ã10â3 to 1.66Ã10â2) broadens the peak of âÎSM which results in the increase in relative cooling power (RCP) from 80â¯J/kg to 121â¯J/kg on application of 20â¯kOe magnetic field. Critical analysis has been performed to explain the enhancement in RCP with Ï2 and the anomaly in âÎSM for Pr0.7Sr0.14Ba0.16MnO3(Ï2=1.17Ã10â2) compound.
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
Sanjib Banik, I. Das,