Large magnetic entropy change in Ni–Mn–In–Sb alloys via directional solidification and calculated by first-principles calculations

Author:

Tian Fanghua1ORCID,Cao Kaiyan1ORCID,Chen Kaiyun2ORCID,Kong Sen1,Dai Zhiyong1ORCID,Zhao Qizhong1ORCID,Fang Minxia1ORCID,Ke Xiaoqin1,Zhou Chao1ORCID,Zhang Yin1ORCID,Yang Sen1ORCID

Affiliation:

1. School of Physics, MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, Xi’an Jiaotong University 1 , Xi’an 710049, China

2. Advanced Materials Research Central, Northwest Institute for Nonferrous Metal Research 2 , Xi’an 710016, China

Abstract

In this work, the magnetocaloric effect in Ni50Mn36In5Sb9 alloy was increased by more than 50% through directional solidification, and the magnetic entropy change increased to 36.2 J kg−1 K−1 under the field of 5 T. The calculated results of differential scanning calorimetry curves confirmed the enhanced entropy change, which also increased from 29.7 to 40.7 J kg−1 K−1. Moreover, first-principles calculations show that the surface formation energy along the L21 (220) plane is the lowest at room temperature, and it is easy to form and undergo martensitic transformation from the (220) crystal plane. Directional solidification causes the alloy to grow basically toward the (220) crystal plane, improve atomic ordering, reduce grain boundaries, and increase grain size. Thereby, the magnetic entropy change is enhanced.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

the Key Scientific and Technological Innovation Team of Shaanxi Province

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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