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Large Magnetocaloric Effect in Cu-Doped La0.7Ca0.3MnO3 Compounds

Author(s)
Ho, T.A.Phan, T.L.Putri, W.B.K.Yu, S.C.Thang, P.D.
Issued Date
2023-08
DOI
10.2320/matertrans.MT-M2023005
URI
https://scholarworks.unist.ac.kr/handle/201301/81409
Citation
MATERIALS TRANSACTIONS, v.64, no.8, pp.1991 - 1999
Abstract
The structural characterization, and the electronic, magnetic and magnetocaloric properties of polycrystalline samples of La0.7Ca0.3Mn11xCuxO3 (x = 0, 0.04, 0.06, 0.08) have been investigated. X-ray powder diffraction analysis indicates all samples having an orthorhombic structure, belonging to the Pbnm space group. X-ray absorption fine structure spectra reveal that Mn is in the mixed state of Mn3+ and Mn4+ while Cu has divalent state (Cu2+). With the substitution of Cu2+ for Mn, the Curie temperature, TC, decreases monotonically from 248 K for x = 0 to 156 K for x = 0.08, which is due to weakened exchange interactions. The downturn in the temperature dependencies of the inverse magnetic susceptibility,»11(T), curves observed above TC for x = 0 and 0.08 is characteristic of the Griffiths-like phase. The analysis of isothermal magnetization data M(T, H) based on the Banerjee’s criteria has indicated x = 0, 0.04, and 0.06 samples undergoing a first-order magnetic phase transition. However, the x = 0.08 sample, the coexistences of second-order magnetic phase transition at low magnetic fields below 8 kOe and first-order magnetic phase transition at high magnetic fields were observed. The maximum magnetic entropy change measured at a magnetic field span of 50 kOe occurring near the TC decreases from 10.3 to 4.8 J/kg.K with increasing x from 0 to 0.08. However, the relative cooling power (RCP) tends to increase, in which a maximum RCP of 360 J/kg for x = 0.08 that is about 1.3 times greater than that observed for the parent sample (x = 0). ©2023 The Japan Institute of Metals and Materials.
Publisher
Japan Institute of Metals
ISSN
1345-9678
Keyword (Author)
magnetic phase transformationmagnetic propertiesmagnetocaloric effect

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