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Can I read Magnetocaloric Effects and Critical Behavior of Rare Earth Manganese Oxides La0.65Ca0.35Mn1-xNixO3 (x = 0, 0.2) on EtoBox?

Magnetocaloric Effects and Critical Behavior of Rare Earth Manganese Oxides La0.65Ca0.35Mn1-xNixO3 (x = 0, 0.2) by Jing Zhao; Xiang Jin; Huiqin Yun; Lin Zheng; Jianjun Zhao; Cheng Li; Zhijun Hao; Ting Xing; Huaijin Ma; Ru Xing is a Physics and Astronomy article available to read on EtoBox.

What is Magnetocaloric Effects and Critical Behavior of Rare Earth Manganese Oxides La0.65Ca0.35Mn1-xNixO3 (x = 0, 0.2) about?

This study used the traditional solid-phase reaction method to prepare polycrystalline samples: La 0.65 Ca 0.35 Mn 1-x Ni x O 3 (x = 0, x = 0.2). The effects of Ni doping on the preformed cluster phases, magnetocaloric effects, and critical behavior were systematically investigated. The results showed that the prepared polycrystalline samples all had cubic chalcogenide structures. The substitution of Ni 2+ ions for a certain number of Mn 3+ ions reduced the changes in the lattice parameters, unit cell volume, Curie temperature (T C ), magnetic entropy, and magnetic entropy change. The changes in these properties originated from the partial substitution of Ni 2+ for Mn 3+ ions, which changed the Mn 3+ /Mn 4+ ratio and decreased the Mn-O-Mn bond angle, thus weakening the double exchange interaction. Both samples had a preformed cluster phase above the low-temperature magnetic transition temperature. The critical behaviors of both samples fit the tricritical model well. A transition from first-to second-order phase transition existed for both the parent and doped samples, and the maximum magnetic entropy changes of the samples at an applied magnetic field of 7 T were 7.70 and 2.08 J•k

Who reads Magnetocaloric Effects and Critical Behavior of Rare Earth Manganese Oxides La0.65Ca0.35Mn1-xNixO3 (x = 0, 0.2)?

It is typically read by researchers, students, and practitioners in Physics and Astronomy.

Author
Jing Zhao; Xiang Jin; Huiqin Yun; Lin Zheng; Jianjun Zhao; Cheng Li; Zhijun Hao; Ting Xing; Huaijin Ma; Ru Xing
Publisher
Springer Science and Business Media LLC
Published
2023
Language
EN
Field
Physics and Astronomy (Physical Sciences)