Large magnetocaloric effect and magnetoresistance in ErNi single crystal
Large magnetocaloric effect and magnetoresistance in ErNi single crystal作者机构:Jiangxi Key Laboratory for Rare Earth Magnetic Materials and DevicesCollege of Rare earthsJiangxi University of Science and TechnologyGanzhou 341000People’s Republic of China Ganzhou Key Laboratory for Rare Earth Magnetic Functional Materials and PhysicsCollege of Rare earthsJiangxi University of Science and TechnologyGanzhou 341000People’s Republic of China School of Materials Science and EngineeringFaculty of Materials Metallurgy and ChemistryJiangxi University of Science and TechnologyGanzhou 341000People’s Republic of China Shenyang National Laboratory for Materials ScienceInstitute of Metal ResearchChinese Academy of SciencesShenyang 110016People’s Republic of China Key Laboratory of Electromagnetic Processing of MaterialsNortheastern UniversityShenyang110819People’s Republic of China
出 版 物:《Journal of Materials Science & Technology》 (材料科学技术(英文版))
年 卷 期:2021年第86卷第27期
页 面:56-63页
核心收录:
学科分类:08[工学] 080501[工学-材料物理与化学] 0805[工学-材料科学与工程(可授工学、理学学位)]
基 金:financially supported by the Natural Science Foundation of Jiangxi Province(No.20202BAB214002) the Jiangxi Provincial Education Department’s Research Project of Science and Technology(No.GJJ190484) the Scientific Research Start-up Foundation of Jiangxi University of Science and Technology(Grant No.3401223366) the National Natural Science Foundation of China(Nos.52061014,51671097 and 52071323) Ganzhou Science and Technology Innovation Talent Plan(No.3208000033) the Key Project of Natural Science Foundation of Jiangxi Province(No.20192ACB20004) the Graduate Student Innovation Special Funds Project of Jiangxi Province(No.YC2019-S303)
主 题:Rare-earth transition-metal intermetallics Magnetic refrigeration Magnetocaloric effect Magnetocrystalline anisotropy Magnetoresistance
摘 要:The magnetic properties,magnetocaloric effect and magnetoresistance in Er Ni single crystal have been investigated in *** decreasing temperature,Er Ni single crystal undergoes two successive magnetic transitions:a paramagnetic to ferromagnetic transition at T_(C)=11 K and a spin-reorientation transition at TS_(R)=5 ***,a sharp field-induced metamagnetic transition is observed below the T_(C)along the a *** Ni single crystal possesses a giant magnetocaloric effect around T_(C).The maximum magnetic entropy change is-36.1 J(kg K)^(-1)along the a axis under the field change of 0-50 k *** particular,the rotating magnetocaloric effect in Er Ni single crystal reaches its maximum under a relatively low field,and the maximum rotating entropy change with a value of 9.3 J(kg K)^(-1)is obtained by rotating the applied field from the[011]to[100]directions under 13 k *** results suggest that Er Ni could be a promising candidate for magnetic refrigeration working at liquid-helium temperature ***,a complicated transport behavior is uncovered in Er Ni single crystal,which is attributed to the complex magnetic states and magnetic polaronic *** positive and negative magnetoresistance are observed.A considerable large magnetoresistance with the value of-34.5%is acquired at 8 K under50 k Oe when the field is along the[100]direction.