论文标题
CRTE1-XSEX合金中的室温磁电效应
Room Temperature Magnetocaloric Effect In CrTe1-XSex Alloys
论文作者
论文摘要
使用常规的固态反应技术制备多晶CRTE1-XSEX样品,并以X-RAD衍射,温度和磁场依赖性磁化为特征,以便在磁静电冷却中使用。 Rietveld的精炼揭示了所有准备好的样品中的两个阶段。一个次要的单斜相阶段,随着SE浓度的降低,直到它消失了接近SE的10%,并且是主要的六边形。在高温下,CRTE1-XSEX是顺磁性的,其铁电磁相变发生在TC〜332、320、318、310、299和295 K处,分别为X = 0.00、0.00、0.02、0.04、0.04、0.06、0.08和0.10。 The magnetocaloric effect analysis (at H=5T) revealed a maximum magnetic entropy change of about 8.3, 7.9, 8.2, 9.1, 9.2, and 8.5 (J/kg.K) with a relative cooling power (RCP) value of about 555, 568, 547, 638, 694, and 668 (J/kg) around Tc for x= 0.00, 0.02, 0.04, 0.06,分别为0.08和0.10。临界行为分析表明,在TC附近测得的磁等温线遵循3D平均临界指数和二阶相变。 A rigorous iteration estimated the critical exponents based on modified Arrott and Kouvel-fisher plots analysis, giving $β$ ~ 0.44, 0.51, 0.46, 0.49, 0.42, 0.49 and $γ$ ~ 1.02, 1.00, 0.99, 1.08, 1.07, 0.96, and 1.01 for x= 0.00, 0.02, 0.04, 0.06, 0.08, and 0.10, 分别。
Polycrystalline CrTe1-xSex samples were prepared using the conventional solid-state reaction technique and characterized by x-rad diffraction, temperature- and field- dependent magnetization for possible use in magnetocaloric cooling. Rietveld refinement revealed two phases in all prepared samples; a minor monoclinic phase that decreases with Se concentration until it vanishes near 10% of Se, and a major hexagonal one. At high temperature, CrTe1-xSex is paramagnetic, with ferromagnetic phase transition occurs at Tc ~332, 320, 318, 310, 299, and 295 K for x= 0.00, 0.02, 0.04, 0.06, 0.08, and 0.10, respectively. The magnetocaloric effect analysis (at H=5T) revealed a maximum magnetic entropy change of about 8.3, 7.9, 8.2, 9.1, 9.2, and 8.5 (J/kg.K) with a relative cooling power (RCP) value of about 555, 568, 547, 638, 694, and 668 (J/kg) around Tc for x= 0.00, 0.02, 0.04, 0.06, 0.08, and 0.10, respectively. Critical behavior analysis showed that the magnetic isotherms measured near Tc follow 3D Mean field critical exponents and a second order phase transition. A rigorous iteration estimated the critical exponents based on modified Arrott and Kouvel-fisher plots analysis, giving $β$ ~ 0.44, 0.51, 0.46, 0.49, 0.42, 0.49 and $γ$ ~ 1.02, 1.00, 0.99, 1.08, 1.07, 0.96, and 1.01 for x= 0.00, 0.02, 0.04, 0.06, 0.08, and 0.10, respectively.