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Exploring magnetocaloric and heat capacity behavior in Fe doped Mn5Ge3 alloy

机译:探索Fe掺杂Mn5Ge3合金的磁热和热容行为

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摘要

Magnetocaloric properties of hexagonally structured Mn 5−xFe xGe 3 ( x=0.15, 0.3, and 0.5) alloys have been investigated using DC magnetization and heat capacity measurements. The maxima of entropy change, −ΔSmmax∼5.04(5.57) J/kg K, along with an adiabatic temperature change of ΔTadmax ∼5.05(7.25) K was observed for x=0.15(0.5) at an applied magnetic field H=5 T. With the scaling analysis of −ΔSm, the rescaled curves collapse onto a single universal curve anticipated by the mean-field theory, revealing a second-order type of magnetic transition. Furthermore, −ΔSmmax follows a power law of Hn with n=0.597(3), 0.591(3), and 0.586(3) for Mn 5−xFe xGe 3 ( x=0.15, 0.3, and 0.5) alloys, respectively. The refrigerant capacity (RC) is increased from 400 J/kg (for x=0.15) to 420 J/kg (for x=0.5) with Fe doping in Mn 5Ge 3. Moreover, the coefficient of refrigerant performance (CRP) enhances with Fe doping from 0.06 (for x=0.15) to 0.1 (for x=0.5). Thus, high RC and reasonable CRP values for earth-abundant Mn-based Mn–Fe–Ge alloys promise the potential to replace the high-cost rare-earth (Gd) and heavy metal-based metallic magnetocaloric systems for use in environment-friendly magnetic refrigeration technology.
机译:使用直流磁化和热容测量研究了六方结构的 Mn 5−xFe xGe 3 ( x=0.15, 0.3, and 0.5) 合金的磁热特性。在外加磁场H=5 T时,x=0.15(0.5)观察到熵变化的最大值−ΔSmmax∼5.04(5.57) J/kg K,绝热温度变化为ΔTadmax∼5.05(7.25) K。通过−ΔSm的缩放分析,重新缩放的曲线坍缩到平均场理论预期的单一通用曲线上,揭示了二阶类型的磁跃迁。此外,对于Mn 5−xFe xGe 3(x=0.15、0.3和0.5)合金,−ΔSmmax的幂律为Hn,n=0.597(3)、0.591(3)和0.586(3)。制冷剂容量(RC)从400 J/kg(x=0.15)增加到420 J/kg(x=0.5),Fe掺杂在Mn 5Ge 3中。此外,制冷剂性能系数(CRP)随着Fe掺杂的掺杂从0.06(x=0.15)提高到0.1(x=0.5)。因此,富含地球的锰基锰-铁-锗合金的高RC和合理的CRP值有望取代高成本的稀土(Gd)和重金属基金属磁热系统,用于环境友好型磁制冷技术。

著录项

  • 来源
    《Journal of Applied Physics》 |2023年第17期|173903.1-173903.7|共7页
  • 作者单位

    CSIR-National Physical Laboratory (NPL);

    UGC-DAE Consortium for Scientific Research Mumbai Centre R-5 Shed, 246C CFB, BARC Campus;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 应用物理学;
  • 关键词

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