Issue 11, 2016

Theoretical investigations on the magnetocaloric and electrical properties of a perovskite manganite La0.67Ba0.1Ca0.23MnO3

Abstract

An investigation of the magnetic, magnetocaloric and electrical behavior of La0.67Ba0.1Ca0.23MnO3 is presented. The variation of magnetization (M) vs. temperature (T) under 1, 2, 3, 4 and 5 T magnetic fields reveals a ferromagnetic–paramagnetic transition. Magnetic entropy change, relative cooling power and specific heat for magnetic field variation were conducted using a phenomenological model. Moreover, the electrical resistivity is fitted with the phenomenological percolation model which is based on the phase segregation of ferromagnetic metallic clusters and paramagnetic insulating regions. The equation of the form Image ID:c5dt04490a-t1.gif relates the magnetic order to the transport behavior of our sample. The results show that the as obtained magnetic entropy change values are similar to those determined using data obtained from the investigation of the dependence of magnetization on the temperature and magnetic field.

Graphical abstract: Theoretical investigations on the magnetocaloric and electrical properties of a perovskite manganite La0.67Ba0.1Ca0.23MnO3

Article information

Article type
Paper
Submitted
13 Nov 2015
Accepted
20 Dec 2015
First published
22 Dec 2015

Dalton Trans., 2016,45, 4736-4746

Theoretical investigations on the magnetocaloric and electrical properties of a perovskite manganite La0.67Ba0.1Ca0.23MnO3

M. Abassi, Za. Mohamed, J. Dhahri and E. K. Hlil, Dalton Trans., 2016, 45, 4736 DOI: 10.1039/C5DT04490A

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