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首页> 外文期刊>Journal of Nanostructure in Chemistry >Fe doping effects on the structural, magnetic, and magnetocaloric properties of nano-sized Pr0.6Bi0.4Mn1?x Fe x O3 (0.1?≤?x?≤?0.3) manganites
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Fe doping effects on the structural, magnetic, and magnetocaloric properties of nano-sized Pr0.6Bi0.4Mn1?x Fe x O3 (0.1?≤?x?≤?0.3) manganites

机译:Fe掺杂对纳米Pr 0.6 Bi 0.4 Mn 1? x < / Emphasis> Fe x O 3 (0.1?≤? x ?≤?0.3)锰矿

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摘要

The structural, magnetic, and magentocaloric properties are systematically investigated for Pr~(0.6)Bi~(0.4)Mn~(1? x )Fe~( x )O~(3) (0.1?≤? x ?≤?0.3) manganites. The samples have been synthesized by sol–gel method. X-ray diffraction (XRD), scanning electron microscopy, transmission electron microscopy, and Fourier transform infrared spectroscopy were employed to investigate the crystalline structure. Magnetization measurements were used to investigate the magnetic properties. All the samples crystallize in the orthorhombic Pnma space group as expected for manganite compounds. The presence of a PrMn~(2)O~(5) compound is also evidenced by XRD. The average size of the manganite particles is about 50–60?nm. Particle characterizations at the atomic level turn to be of paramount importance. Magnetic measurements versus temperature under an applied magnetic field of 0.01?T show that all samples exhibit a paramagnetic–ferromagnetic transition. Temperature-dependent magnetization measurements and Arrott analysis reveal second-first order ferromagnetic transitions for ( x ?=?0.1 and x ?=?0.2). The magnetic entropy change |Δ S ~(M)| was estimated using Maxwell relation method and is found to reach maximum values of 0.47 and 0.37?J/kg/K under an applied magnetic field of 5 T for x ?=?0.1 and x ?=?0.2, respectively.
机译:对Pr〜(0.6)Bi〜(0.4)Mn〜(1?x)Fe〜(x)O〜(3)(0.1?≤?x?≤?0.3)的结构,磁性和介热性能进行了系统研究锰矿。样品是通过溶胶-凝胶法合成的。 X射线衍射(XRD),扫描电子显微镜,透射电子显微镜和傅里叶变换红外光谱用于研究晶体结构。磁化测量用于研究磁性能。如锰锰化合物预期的那样,所有样品均在正交晶体的Pnma空间群中结晶。 XRD也证明了PrMn〜(2)O〜(5)化合物的存在。锰矿颗粒的平均尺寸约为50-60nm。原子级的粒子表征变得至关重要。在0.01?T的磁场下,磁测量值与温度的关系表明,所有样品均表现出顺磁-铁磁转变。与温度有关的磁化测量和Arrott分析揭示了(x?=?0.1和x?=?0.2)的二阶铁磁跃迁。磁熵变|ΔS〜(M)|使用麦克斯韦尔关系法估算了α的α,并且在施加5T的磁场时,对于xα=α0.1和xα=α0.2,分别达到0.47和0.37Ω·J / kg / K的最大值。

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