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Magnetostructural Phase Transitions and Magnetocaloric Effects in MnNiGe1-xAlx

机译:MnNiGe1-xAlx中的磁结构相变和磁热效应

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摘要

The thermomagnetic and magnetocaloric properties of the MnNiGe1−xAlx system have been investigated by magnetization and differential scanning calorimetry (DSC) measurements. The presence of first-order magnetostructural transitions (MSTs) from hexagonal ferromagnetic to orthorhombic antiferromagnetic phases has been detected for x = 0.085 and 0.09 at 193 K and 186 K, respectively. The values of latent heat (L = 6.6 J/g) and corresponding total entropy changes (ΔST = 35 J/kg K) have been evaluated for the MST (x = 0.09) from DSC measurements. The magnetic entropy change for x = 0.09 (ΔSM = 17.6 J/kg K for 5 T) was found to be comparable with well-known giant magnetocaloric materials, such as Gd5Si2Ge2, MnFeP0.45As0.55, and Ni50Mn37Sn13.
机译:通过磁化和差示扫描量热法(DSC)测量研究了MnNiGe1-xAlx系统的热磁和磁热性质。分别在193 K和186 K处检测到x = 0.085和0.09时,从六方铁磁相到正交铁反铁磁相的一阶磁结构转变(MST)的存在。根据DSC测量,对MST的潜热值(L = 6.6 J / g)和相应的总熵变化(ΔST= 35 J / kg K)进行了评估。发现x = 0.09(5 T的ΔSM= 17.6 J / kg K)的磁熵变可与众所周知的巨型磁热材料,例如Gd5Si2Ge2,MnFeP0.45As0.55和Ni50Mn37Sn13相当。

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