首页> 外文会议>International Conference on Functional Materials Science >Study of Magnetoresistance Effect and Magnetic Properties of La_(0.67)Sr_(0.33)Mn_(1-x)Ni_xO_3 (x = 0 and 0.2) Material Prepared by Sol-Gel Method
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Study of Magnetoresistance Effect and Magnetic Properties of La_(0.67)Sr_(0.33)Mn_(1-x)Ni_xO_3 (x = 0 and 0.2) Material Prepared by Sol-Gel Method

机译:通过溶胶 - 凝胶法制备La_(0.67)Sr_(0.33)Mn_(0.33)Mn_(1-X)Ni_XO_3(X = 0和0.2)材料的La_(0.67)Sr_(0.33)的磁性效应和磁性

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Mixed valence manganite materials have been studied due to their interesting physical properties such as their magnetoresistance (MR) effect. The change of Mn~(3+)/Mn~(4+) ratio affects the possible bonds between anion and cation and their spin structure that may occur in the samples. The aim of this research is to study the change of magnetoresistance effect and magnetic properties of La_(0.67)Sr_(0.33)MnO_3 (LSMO) by doping the Mn site with Ni ion. La_(0.67)Sr_(0.33)Mn_(1-x)Ni_xO_3 samples were synthesized by using sol-gel method and characterized by using X-ray diffractometer (XRD) and Energy Dispersive X-ray spectroscopy (EDX) to confirm whether Ni has been doped successfully to the parental compound or not. XRD results showed that the samples have a single phase and Ni peak has been detected in the EDX result of Ni-doped LSMO. Resistivity and magnetic measurement showed that LSMO material has ferromagnetic metallic behavior, while x = 0.20 Ni-doped LSMO sample showed paramagnetic insulator behavior. The absolute value of the MR for un-doped sample is higher than the doped sample when the low field is applied, while under the influence of the high magnetic field, it become smaller than the doped sample.
机译:由于它们的磁阻(MR)效应,因此已经研究了混合价锰材料。 Mn〜(3 +)/ Mn〜(4+)比的变化会影响阴离子和阳离子和它们在样品中可能发生的旋转结构之间的可能键。该研究的目的是通过用Ni离子掺杂Mn位点来研究La_(0.67)Sr_(0.33)MnO_3(LSMO)的磁阻效应和磁性的变化。通过使用溶胶 - 凝胶法合成La_(0.67)Sr_(0.33)Mn_(1-x)Ni_xO_3样品,并使用X射线衍射仪(XRD)和能量分散X射线光谱(EDX)来证实NI是否具有已成功掺杂至亲本化合物。 XRD结果表明,样品具有单相,在Ni掺杂LSMO的EDX结果中检测到Ni峰。电阻率和磁性测量表明,LSMO材料具有铁磁性的金属行为,而X = 0.20 Ni-掺杂的LSMO样品显示了顺磁绝缘体行为。当施加低场时,对未掺杂样品MR的绝对值高于掺杂样品,同时在高磁场的影响下,它变得小于掺杂样品。

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