We report giant magnetoresistance up to 150 percent at low bias current and low temperature as well as room temperature magnetoresistance in polymeric spin-valves having the structure LSMO/conjugated polymer/Co. The conjugated polymers, regiorandom and regioregular P3HT were used as the spacer materials. We observed an asymmetric bias voltage dependence of different devices and additional, hitherto unseen, peaks in MR vs. magnetic field plot with low bias currents measurements that we attribute to local magnetic moments due to spin-trapping in the defects in the spacer material. Also, various spacer thicknesses led to variation of magnetoresistance within a certain temperature range.
翻译:我们报告说,在低偏差电流和低温下,巨型磁性电磁性高达150%,在具有LSMO/合成聚合物/Co结构的聚合型螺旋阀中,还存在室温磁性磁性高达150%。 共聚聚合物、再血管和正对P3HT被用作空间材料。 我们观察到不同装置的不对称偏差电压依赖性以及MR对磁场地块的额外峰值,而MR与磁场地块的峰值,其偏差电性电磁性测量值较低,我们将其归因于空间材料缺陷的本地磁时段。此外,各种空间的厚度导致某些温度范围内的磁性变化。