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The effect of particle size on structural, magnetic and transport properties of La0.7Sr0.3MnO3 nanoparticles

机译:粒径对La0.7SR0.3MNO3纳米粒子结构,磁性和运输性能的影响

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This paper reports the synthesis of different particle size La0.7Sr0.3MnO3 (LSMO) nanoparticles using non-aqueous sol gel synthesis route by calcination at temperatures 750 degrees C, 850 degrees C and 950 degrees C. In the present work, the effect of particle size of LSMO nanoparticles on its structural, magnetic and transport properties has been studied in detail. The X-ray diffraction analysis confirms the formation of LSMO nanoparticles having rhombohedral (R3c) structure with average particle size of 20 nm, 22.5 nm and 25.6 nm. An increase in magnetization and decrease in coercivity with increase in particle size is attributed to the magnetically disordered surface layer. The bifurcation in ZFC-FC magnetization indicates the possibility of spin glass like behavior of the LSMO nano particles. The effect of particle size on the resistivity and magnetoresistance were studied by using different conduction mechanism for different temperature regions. The upturn in the p-T curve at lower temperatures was explained by using Kondo-like transport mechanism. The maximum LFMR achieved was 32.3% at a field of 1 T at 10 K for 20 nm LSMO nanoparticle.
机译:本文报道了使用非溶胶凝胶合成途径的不同粒度La0.7SR0.3MNO3(LSMO)纳米颗粒的合成在750℃,850℃和950℃下煅烧。在目前的工作中,效果已经详细研究了LSMO纳米颗粒的粒径,并详细研究了其结构,磁性和运输特性。 X射线衍射分析证实具有具有菱形(R3C)结构的LSMO纳米颗粒,其平均粒度为20nm,22.5nm和25.6nm。随着粒度的增加,磁性化表面层的磁化和矫顽力的降低增加。 ZFC-Fc磁化中的分叉表示LSMO纳米颗粒的旋转玻璃的可能性。通过使用不同的温度区域的不同传导机构研究了粒度对电阻率和磁阻的影响。通过使用Kondo的运输机制来解释较低温度下的P-T曲线中的上翘。在10K的1T处,实现的最大LFMR为32.3%,对于20k,持续20nM LSMO纳米颗粒。

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