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Exploring room-temperature transport of single-molecule magnet-based molecular spintronics devices using the magnetic tunnel junction as a device platform

机译:使用磁隧道结作为器件平台探索单分子磁铁基分子闪奖装置的室温输送

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摘要

A device architecture utilizing a single-molecule magnet (SMM) as a device element between two ferromagnetic electrodes may open vast opportunities to create novel molecular spintronics devices. Here, we report a method of connecting an SMM to the ferromagnetic electrodes. We utilized a nickel (Ni)-AlOx-Ni magnetic tunnel junction (MTJ) with the exposed side edges as a test bed. In the present work, we utilized an SMM with a hexanuclear [Mn-6(mu(3)-O)(2)(H2N-sao)(6)(6-atha)(2)(EtOH)(6)] [H2N-saoH = salicylamidoxime, 6-atha = 6-acetylthiohexanoate] complex that is attached to alkane tethers terminated with thiols. These Mn-based molecules were electrochemically bonded between the two Ni electrodes of an exposed-edge tunnel junction, which was produced by the lift-off method. The SMM-treated MTJ exhibited current enhancement and transitory current suppression at room temperature. Monte Carlo simulation was utilized to understand the transport properties of our molecular spintronics device.
机译:利用单分子磁体(SMM)作为两个铁磁电极之间的装置元件的装置架构可以打开巨大机会以产生新的分子闪奖装置。这里,我们报告了一种将SMM连接到铁磁电极的方法。我们利用镍(Ni)-alox-Ni磁隧道结(MTJ),其中暴露的侧边缘作为试验台。在本作工作中,我们利用己克核[Mn-6(3)-O)(2)(2)(H2N-Sao)(6)(6-Atha)(2)(EtOH)(6)]中的SMM。 [H2N-SaOH =水杨酰氨肟,6- acha = 6-乙酰硫代己酸酯]复合物,其附着在用硫醇终止的烷烃系苯乙烷上。这些基于Mn的分子电化学键合在露出的隧道结的两个Ni电极之间,其通过剥离方法产生。 SMM处理的MTJ在室温下表现出电流增强和暂时电流抑制。 Monte Carlo仿真用于了解我们的分子闪奖装置的运输性能。

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  • 来源
    《RSC Advances》 |2020年第22期|共10页
  • 作者单位

    Univ Dist Columbia Dept Mech Engn 4200 Connecticut Ave NW Washington DC 20008 USA;

    Univ Dist Columbia Dept Mech Engn 4200 Connecticut Ave NW Washington DC 20008 USA;

    Univ Dist Columbia Dept Mech Engn 4200 Connecticut Ave NW Washington DC 20008 USA;

    Univ Valencia Inst Ciencia Mol ICMol C Catedrat Jose Beltran Valencia 46980 Spain;

    Univ Valencia Inst Ciencia Mol ICMol C Catedrat Jose Beltran Valencia 46980 Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-19 17:45:04

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