首页> 外文期刊>Bulletin of Materials Science >Electronic transport and magnetoresistivity of La0.4Bi0.1Ca0.5-x,SrxMnO3 (x=0.1 and 0.2)
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Electronic transport and magnetoresistivity of La0.4Bi0.1Ca0.5-x,SrxMnO3 (x=0.1 and 0.2)

机译:La0.4Bi0.1Ca0.5-x,SrxMnO3(x = 0.1和0.2)的电子输运和磁阻

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摘要

Electrical resistivity and magnetoresistive behaviour of bismuth-substituted lanthanum manganites La0.4Bi0.1Ca0.5-xSrxMnO3 (x = 0.1 and 0.2) were systematically studied by varying the temperature from 2 to 300 K and the magnetic field up to 12 T. The samples were found to crystallize in rhombohedral structure and their morphology shows near-spherical nanosize crystallites. Charge ordering was observed in both the samples under zero field conditions and corresponding transition temperature T-CO was found to decrease with the increase of x. Resistivity measurements with magnetic field also showed suppression of magnetoresistivity (MR) with the increase of x and the maximum MR was found to be 98 and 93% for x = 0.1 and 0.2, respectively, at 10 T. In the high-temperature domain, the electronic transport was observed to be dominated by the variable range hopping mechanism for both the samples, whereas in the low-temperature domain the electrical conduction of x = 0.1 sample was observed to be contributed by various other electron scattering mechanisms.
机译:通过在2至300 K的温度范围内以及最高12 T的磁场范围内系统地研究了铋取代的镧锰锰酸盐La0.4Bi0.1Ca0.5-xSrxMnO3(x = 0.1和0.2)的电阻率和磁阻行为。被发现在菱面体结构中结晶,并且它们的形态显示出近球形的纳米微晶。在零场条件下在两个样品中均观察到电荷排序,并且发现相应的转变温度T-CO随x的增加而降低。磁场电阻率测量还显示,随着x的增加,磁阻(MR)受到抑制,并且在10 T下x = 0.1和0.2时,最大MR分别为98%和93%。在高温域,两种样品的电子传输均受可变范围跳跃机制的支配,而在低温域,x = 0.1样品的电导率是由其他各种电子散射机制所贡献的。

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