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首页> 外文期刊>Journal of Materials Science >Electrical transport properties of Nd0.67-xEuxSr0.33MnO3 (0 = x = 0.67) manganites
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Electrical transport properties of Nd0.67-xEuxSr0.33MnO3 (0 = x = 0.67) manganites

机译:Nd0.67-xEuxSr0.33MnO3(0 <= x <= 0.67)锰矿的电输运性质

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A systematic investigation of electrical transport properties viz., electrical conductivity and thermopower of Eu-doped Neodymium-based colossal magnetoresistive manganites with compositional formula, Nd0.67-x Eu-x Sr0.33MnO3 (x = 0-0.67) has been undertaken. These materials were prepared by citrate gel route and characterized by X-ray diffraction, scanning electron microscopy, AC susceptibility, and electrical resistivity measurements. With a view to understand the complex conduction mechanism of these materials, electrical resistivity and thermoelectric power (TEP) data have been analyzed using various theoretical models. It has been concluded that the ferromagnetic metallic part of the conduction mechanism is explained by grain/domain boundary, electron-electron, and magnon scattering mechanisms, while that of high temperature paramagnetic insulating region might be due to small polaron hopping mechanism. The sign change of charge carriers observed in TEP measurements is attributed to the oxygen deficiency of the samples.
机译:已对组成式为Nd0.67-x Eu-x Sr0.33MnO3(x = 0-0.67)的Eu掺杂钕基钕基巨磁致电阻锰的电输运特性,电导率和热功率进行了系统研究。这些材料是通过柠檬酸盐凝胶法制备的,并通过X射线衍射,扫描电子显微镜,交流磁化率和电阻率测量进行了表征。为了了解这些材料的复杂传导机理,已使用各种理论模型分析了电阻率和热电功率(TEP)数据。已经得出结论,传导机制的铁磁金属部分是由晶格/畴边界,电子和马格诺散射机制解释的,而高温顺磁绝缘区域的铁磁金属部分可能是由于极化子跳跃机制小所致。在TEP测量中观察到的电荷载流子的符号变化归因于样品中的氧气不足。

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