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Low temperature magneto transport features of rare earth element functionalized carbon nanotube network devices for spintronic applications

机译:用于自旋电子学的稀土元素功能化碳纳米管网络器件的低温磁传输特性

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In this paper we report on the fabrication of a spintronic device based on multiwalled carbon nanotubes functionalized/coupled with a rare earth element complex. The spin valve behavior is verified by magneto-resistance fluctuations at low temperatures. We report the magneto-transport features of spin valve devices based on multiwalled carbon nanotube covalently functionalized with a gadolinium complex. The switching is encoded in the composite from which devices are fabricated by di-electrophoresis. The magnetic field dependent electronic transport characteristics are investigated through the Cryogenic high field measurement system at 300 mK. Structural characterization of the material through transmission and scanning electron microscopy and Raman spectroscopy of the pristine and composite is done. The electronic transport shows a magnetic field dependence which is characteristic of spin valve at 300 mK and furthermore this spin valve feature is temperature dependent.
机译:在本文中,我们报告了一种基于功能化/耦合有稀土元素配合物的多壁碳纳米管的自旋电子器件的制造。通过低温下的磁阻波动来验证自旋阀的性能。我们报告了基于multi复合物共价功能化的多壁碳纳米管的自旋阀装置的磁传输特征。开关被编码在复合材料中,通过介电泳从该复合材料中制造器件。通过低温高场测量系统在300 mK下研究了与磁场有关的电子传输特性。通过透射和扫描电子显微镜以及原始和复合材料的拉曼光谱对材料进行结构表征。电子传输显示出磁场依赖性,这是自旋阀在300 mK时的特征,此外,该自旋阀的特性也随温度而变。

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