首页> 外文OA文献 >Heterojunction Metal-Oxide-Metal Au-Fe\u3csub\u3e3\u3c/sub\u3eO\u3csub\u3e4\u3c/sub\u3e-Au Single Nanowire Device for Spintronics
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Heterojunction Metal-Oxide-Metal Au-Fe\u3csub\u3e3\u3c/sub\u3eO\u3csub\u3e4\u3c/sub\u3e-Au Single Nanowire Device for Spintronics

机译:异质结金属氧化物金属Au-Fe \ u3csub \ u3e3 \ u3c / sub \ u3eO \ u3csub \ u3e4 \ u3c / sub \ u3e-Au用于自旋电子学的单纳米线器件

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摘要

In this report, we present the synthesis of heterojunction magnetite nanowires in alumina template and describe magnetic and electrical properties from a single nanowire device for spintronics applications. Heterojunction Au-Fe-Au nanowire arrays were electrodeposited in porous aluminum oxide templates, and an extensive and controlled heat treatment process converted Fe segment to nanocrystalline cubic magnetite phase with well-defined Au-Fe3O4 interfaces as confirmed by the transmission electron microscopy. Magnetic measurements revealed Verwey transition shoulder around 120 K and a room temperature coercive field of 90 Oe. Current–voltage (I-V) characteristics of a single Au-Fe3O4-Au nanowire have exhibited Ohmic behavior. Anomalous positive magnetoresistance of about 0.5% is observed on a singlena nowire, which is attributed to the high spin polarization in nanowire device with pure Fe3O4 phase and nanocontact barrier. This work demonstrates the ability to preserve the pristine Fe3O4 and well defined electrode contact metal (Au)—magnetite interface, which helps in attaining high spin polarized current.
机译:在本报告中,我们介绍了氧化铝模板中异质结磁铁矿纳米线的合成,并描述了用于自旋电子学的单个纳米线装置的磁学和电学性质。异质结Au-Fe-Au纳米线阵列被电沉积在多孔氧化铝模板中,并且通过透射电子显微镜证实,广泛而受控的热处理工艺将Fe段转换为具有明确Au-Fe3O4界面的纳米晶立方磁铁矿相。磁性测量显示,Verwey过渡台肩约为120 K,室温矫顽场为90 Oe。单个Au-Fe3O4-Au纳米线的电流-电压(I-V)特性表现出欧姆特性。在单晶纳米线上观察到约0.5%的异常正磁电阻,这归因于具有纯Fe3O4相和纳米接触势垒的纳米线器件中的高自旋极化。这项工作证明了保留原始Fe3O4和定义明确的电极接触金属(Au)-磁铁矿界面的能力,这有助于获得高自旋极化电流。

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