Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7988231 | Intermetallics | 2018 | 6 Pages |
Abstract
The structure, magnetic phase transition and magnetocaloric properties of ternary intermetallic RE5Ni2In4 (REâ¯=â¯Dy, Ho and Er) compounds are investigated. The results of XRD and Rietveld refinement confirm that all the samples crystallized in the orthorhombic Lu5Ni2In4-type structure belonging to the space group of Pbam. The RE5Ni2In4 compounds show various magnetic phase transition behaviors, i.e. a ferromagnetic to paramagnetic (FM-PM) phase transition at TCâ¯=â¯105â¯K together with an antiferromagnetic to ferromagnetic (AFM-FM) at low temperature TNâ¯=â¯20â¯K for the Dy5Ni2In4, the Ho5Ni2In4 reveals two different kinds of phase transitions at TNâ¯=â¯31â¯K and TCâ¯=â¯19â¯K which are corresponding to the second order PM-AFM and the first order AFM-FM phase transitions, and a PM-FM phase transition exists in the Er5Ni2In4 at TCâ¯=â¯21â¯K. In addition, a large hysteresis loop with particular shape and a high coercive field (HCâ¯=â¯4â¯T) are observed at 3â¯K for the Dy5Ni2In4 compound. The corresponding isothermal magnetization curves change into the state of reversibility when the temperature is 60â¯K, and the coercivity is reduced to zero. The maximum values of âÎSMmax are determined to be 4.7, 10.1 and 10.2â¯J/kg K around TC for the RE5Ni2In4 (REâ¯=â¯Dy, Ho and Er) compounds in a field of 7â¯T, respectively.
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
Zhenqian Zhang, Xiaoshi Dong, Qiang Wang, Lingwei Li,