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首页> 外文期刊>Journal of materials science >Effect of A-site disorder of heavier rare earth ion on structural, magnetic and transport properties of lanthanum based chromium manganite perovskite system
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Effect of A-site disorder of heavier rare earth ion on structural, magnetic and transport properties of lanthanum based chromium manganite perovskite system

机译:重稀土离子的A位无序对镧基铬锰矿钙钛矿体系的结构,磁性和输运性能的影响

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In order to study the effect of A-site cation mismatch on the structural, magnetic and transport properties, a systematic investigation of La0.6R0.1Ca0.3Mn0.9Cr0.1O3 (A=La, Eu and Ho) has been undertaken. Rietveld analysis of powder x-ray diffraction data revealed that all the compounds crystallize in the orthorhombic symmetry with Pbnm space group. Temperature dependent magnetization studies showed that all our investigated compounds exhibit a paramagnetic-ferromagnetic transition at low temperature with Curie temperature (T-c) decreases with decrease in average A-site ionic radius (r(A)). The materials show metal-semiconductor transition at low temperature and the values of metal-semiconductor transition temperature (T-MS) are found to be much lower than Curie temperatutre (T-c). It has been concluded that the conduction mechanism was dominated by small polaron hopping model in the high temperature paramagnetic semiconducting region.
机译:为了研究A位阳离子错配对结构,磁性和输运性质的影响,已对La0.6R0.1Ca0.3Mn0.9Cr0.1O3(A = La,Eu和Ho)进行了系统研究。粉末X射线衍射数据的Rietveld分析表明,所有化合物均以与Pbnm空间群正交的对称性结晶。温度依赖性磁化研究表明,我们所有研究的化合物在低温下均表现出顺磁-铁磁跃迁,居里温度(T-c)随平均A位离子半径(r(A))的减小而降低。该材料在低温下显示出金属-半导体的转变,并且发现金属-半导体的转变温度(T-MS)的值远低于居里温度(T-c)。可以得出结论,在高温顺磁半导体区域中,传导机制主要由小极化子跳跃模型决定。

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