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首页> 外文期刊>Nanoscale >Combined spin filtering actions in hybrid magnetic junctions based on organic chains covalently attached to graphene
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Combined spin filtering actions in hybrid magnetic junctions based on organic chains covalently attached to graphene

机译:基于石墨烯共价连接的有机链的杂化磁结组合自旋滤波作用

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We present a bias-controlled spin-filtering mechanism in spin-valves including a hybrid organic chain/graphene interface. Wet growth conditions of oligomeric molecular chains would usually lead, during standard CMOS-compatible fabrication processes, to the quenching of spintronics properties of metallic spin sources due to oxidation. We demonstrate by X-ray photoelectron spectroscopy that the use of a protective graphene layer fully preserves the metallic character of the ferromagnetic surface and thus its capability to deliver spin polarized currents. We focus here on a small aromatic chain of controllable lengths, formed by nitrobenzene monomers and derived from the commercial 4-nitrobenzene diazonium tetrafluoroborate, covalently attached to the graphene passivated spin sources thanks to electroreduction. A unique bias dependent switch of the spin signal is then observed in complete spin valve devices, from minority to majority spin carriers filtering. First-principles calculations are used to highlight the key role played by the spin-dependent hybridization of electronic states present at the different interfaces. Our work is a first step towards the exploration of spin transport using different functional molecular chains. It opens the perspective of atomic tailoring of magnetic junction devices towards spin and quantum transport control, thanks to the flexibility of ambient electrochemical surface functionalization processes.
机译:我们提出一个bias-controlled观察到了在spin-valves包括一个混合机制有机链/石墨烯界面。低聚物的分子链的条件通常,在标准CMOS-compatible制造过程的淬火自旋电子学性能的金属旋转的来源由于氧化。光电子能谱的使用保护石墨烯层完全保留了铁磁表面的金属特性从而实现自旋极化的能力电流。可控的长度,由硝基苯单体和来自商业4-nitrobenzene tetrafluoroborate重氮,共价连接到石墨烯钝化由于电解还原旋转来源。偏见依赖旋转的开关信号观察到完整的自旋阀装置,少数到多数旋转运营商过滤。采用基于计算使用突出所发挥的关键作用spin-dependent杂交的电子状态出席不同的接口。第一步的探索使用不同的功能性分子运输链。裁剪磁结设备的方向自旋和量子传输控制,多亏了环境电化学表面的灵活性功能化过程。

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