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首页> 外文期刊>Nanoscale >Highly interface-dependent spin transport in an Fe–Mn(DBTAA)–Fe single molecule spintronic device
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Highly interface-dependent spin transport in an Fe–Mn(DBTAA)–Fe single molecule spintronic device

机译:Fe–Mn(DBTAA)–Fe单分子自旋电子器件中高度依赖的自旋输运

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摘要

Understanding the spinterface between magnetic electrodes and molecules, and realizing the controllable spin filtering effect, are crucial for the development of high-performance molecular devices, but both still face big challenges. Here, based on first-principles calculations of an Fe–Mn(DBTAA)–Fe single molecule spintronic device, we unveil that spin filtering efficiency is highly dependent on interface configurations, which can modulate and even reverse the spin polarization of tunnelling electrons. For Fe–Mn(DBTAA)–Fe, a varied spin filtering from −93% to +75% is observed. The underlying mechanism could be attributed to the distinct magnetic and electronic couplings between the Fe electrode and the Mn(DBTAA) molecule in different interface configurations. This work not only highlights the importance of a magnetic electrode–molecule interface, but also implies that through suitable interface design, the performance, e.g., of the spin filtering channel of single molecule spintronic devices, can be flexibly tuned.
机译:理解spinterface磁之间电极和分子,实现可控的自旋过滤效果,是至关重要的为发展高性能分子设备,但依然面临着巨大的挑战。这里,采用基于计算的基础上一个Fe-Mn (DBTAA)铁单分子自旋电子设备,我们推出自旋过滤效率是高度依赖的接口配置,可调节甚至反向旋转极化的隧穿电子。Fe-Mn (DBTAA)铁,不同自旋过滤−93% + 75%是观察。可以归因于不同的机制磁性和电子铁之间的耦合电极和Mn (DBTAA)分子在不同接口配置。突出一个磁性的重要性electrode-molecule接口,但也暗示通过合适的界面设计,性能,如自旋过滤通道单分子自旋电子元件,可以灵活调整。

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