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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Thermopower studies of Pr0.67D0.33MnO3 manganite system
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Thermopower studies of Pr0.67D0.33MnO3 manganite system

机译:Pr0.67D0.33MnO3锰矿体系的热电研究

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With a view to explaining the structural and electrical transport behaviour of some rare earth manganites, having the general formula Pr0.67D0.33MnO3 (D = Ca, Sr, Pb and Ba), a systematic investigation of the electrical resistivity, thermopower and magnetic properties has been undertaken. These materials were prepared using the citrate-gel route by sintering at 900 degrees C. All the materials were characterized by x- ray diffraction, scanning electron microscopy, etc measurements. The x- ray data were analysed using the Rietveld method and the variation of various parameters involved in the process as explained. The average crystallite size of the materials has been estimated using the peak broadening method, while T-C and T-P values were determined from ac magnetic susceptibility and electrical resistivity measurements, respectively. Finally, the magnetoresistance (MR) measurements were also carried out over a magnetic field of 1 - 7 T and the data clearly exhibit the extrinsic MR in ferromagnetic metallic region. The influence of average A-site cation radius [rA] and cation mismatch parameter sigma(2) on thermoelectric power (TEP), MR, electrical and magnetic transitions has been analysed. The TEP data at low temperatures (T < T-P) have been analysed by considering the magnon concepts, while the high temperature (T > TP) data were explained by the Mott's small polaron conduction mechanism. The effects of [r(A)] and sigma(2) on polaron activation and hopping energies were also studied systematically.
机译:为了解释某些具有通式Pr0.67D0.33MnO3(D = Ca,Sr,Pb和Ba)的稀土锰矿的结构和电迁移行为,对电阻率,热功率和磁性能进行了系统研究已经进行。这些材料是通过在900摄氏度下烧结而使用柠檬酸盐-凝胶路线制备的。所有材料均通过X射线衍射,扫描电子显微镜等进行了表征。使用Rietveld方法分析了X射线数据,并说明了过程中涉及的各种参数的变化。使用峰展宽法估算了材料的平均微晶尺寸,而T-C和T-P值则分别根据交流磁化率和电阻率测量值确定。最后,还对1-7 T的磁场进行了磁阻(MR)测量,数据清楚地显示了铁磁金属区域中的非本征MR。分析了平均A位阳离子半径[rA]和阳离子失配参数sigma(2)对热电功率(TEP),MR,电和磁跃迁的影响。低温(T TP)数据则通过Mott的小极化子传导机理进行了解释。还系统地研究了[r(A)]和sigma(2)对极化子激活和跳跃能量的影响。

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