首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of B-site Ti doping on the magnetic, low field magnetocaloric and electrical transport properties of La0.7Sr0.3Mn1-xTixO3 perovskites
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Effect of B-site Ti doping on the magnetic, low field magnetocaloric and electrical transport properties of La0.7Sr0.3Mn1-xTixO3 perovskites

机译:B位钛掺杂对La0.7Sr0.3Mn1-xTixO3钙钛矿的磁,低场磁热和电输运性质的影响

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We report the effect of Ti doping on the magnetic, magnetocaloric and transport properties of La0.7Sr0.3Mn1-xTixO3 (0 <= x <= 0.3) polycrystalline compounds. Magnetic studies indicate that Ti doping weakens the double exchange ferromagnetic-paramagnetic transition and lowers the paramagnetic-ferromagnetic transition temperature. Also the results show that by increasing Ti doping level, the metal-insulator transition temperature decreases and the system with x >= 0.2 becomes an insulator. The magnetocaloric effect of 0 <= x <= 0.1 samples was studied using phenomenological method. With the increase in Ti-doping level, the Delta S-max/Delta H x 10(2) value decreases from 16.2 J/kg K kOe (x = 0.0) to 4.2 J/kg K kOe (x = 0.05). However, the peak of the magnetic entropy change versus temperature plot for the sample with x = 0.05 broadens significantly. These characteristics, together with the critical transition temperature being near room temperature, indicate that this sample is promising as an efficient magnetic refrigerant at around room temperature. Magneto-resistance MR% data shows that its peak value increases with Ti-doping and MR reach highest value at x = 0.1. Moreover, the isothermal field dependent magnetoresistance in the temperatures range from 20 K to 150 K has been analyzed using a model based on spin polarized tunneling at the grain boundaries and it shows that there is a good agreement with our experimental data. The samples with 0 <= x <= 0.1 exhibit metallic behavior, which fits well to the resistivity rho = rho(0) + rho T-2(2) + rho T-4.5(4.5), implying that combination of electron-electron, electron-magnon, and electron-phonon scattering processes contribute to the electrical resistivity in these samples. The electrical resistivity data in the insulating region of other samples (x >= 0.1) is well described using small polaron hopping and Mott's variable range hopping models. The non-adiabatic hopping conduction mechanism seems to be the most appropriate model explaining the conduction mechanism in La0.7Sr0.3Mn1-xTixO3 (0.1 <= x <= 0.3). (C) 2015 Elsevier B.V. All rights reserved.
机译:我们报道了Ti掺杂对La0.7Sr0.3Mn1-xTixO3(0 <= x <= 0.3)多晶化合物的磁,磁热和输运性能的影响。磁性研究表明,Ti掺杂会弱化双交换铁磁性-顺磁性转变并降低顺磁性-铁磁性转变温度。结果还表明,通过增加Ti掺杂量,金属-绝缘体的转变温度降低,并且x> = 0.2的系统成为绝缘体。使用现象学方法研究了0 <= x <= 0.1个样品的磁热效应。随着Ti掺杂水平的提高,Delta S-max / Delta H x 10(2)值从16.2 J / kg K kOe(x = 0.0)降低到4.2 J / kg K kOe(x = 0.05)。但是,x = 0.05的样品的磁熵变与温度曲线的峰值显着变宽。这些特性以及临界转变温度接近室温,表明该样品有望在室温下用作有效的磁性制冷剂。磁阻MR%数据表明,其峰值随Ti掺杂而增加,并且MR在x = 0.1时达到最大值。此外,已经使用基于在晶界处的自旋极化隧穿的模型分析了在20 K至150 K的温度范围内等温场相关的磁阻,这表明与我们的实验数据有很好的一致性。 0 <= x <= 0.1的样品表现出金属性能,非常适合电阻率rho = rho(0)+ rho T-2(2)+ rho T-4.5(4.5),这表明电子与电子的组合,电子-磁振子和电子-声子散射过程有助于这些样品的电阻率。使用小极化子跳变和Mott的可变范围跳变模型很好地描述了其他样品(x> = 0.1)的绝缘区域中的电阻率数据。非绝热跳跃传导机制似乎是解释La0.7Sr0.3Mn1-xTixO3(0.1 <= x <= 0.3)中传导机制的最合适模型。 (C)2015 Elsevier B.V.保留所有权利。

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