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Nearly Perfect Spin Filter, Spin Valve and Negative Differential Resistance Effects in a Fe4-based Single-molecule Junction

机译:Fe 4 基单分子结中的近乎完美的自旋滤波器,自旋阀和负微分电阻效应

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The spin-polarized transport in a single-molecule magnet Fe4 sandwiched between two gold electrodes is studied, using nonequilibrium Green's functions in combination with the density-functional theory. We predict that the device possesses spin filter effect (SFE), spin valve effect (SVE), and negative differential resistance (NDR) behavior. Moreover, we also find that the appropriate chemical ligand, coupling the single molecule to leads, is a key factor for manipulating spin-dependent transport. The device containing the methyl ligand behaves as a nearly perfect spin filter with efficiency approaching 100%, and the transport is dominated by transmission through the Fe4 metal center. However, in the case of phenyl ligand, the spin filter effect seems to be reduced, but the spin valve effect is significantly enhanced with a large magnetoresistance ratio, reaching 1800%. This may be attributed to the blocking effect of the phenyl ligands in mediating transport. Our findings suggest that such a multifunctional molecular device, possessing SVE, NDR and high SFE simultaneously, would be an excellent candidate for spintronics of molecular devices.
机译:利用非平衡格林函数结合密度泛函理论,研究了夹在两个金电极之间的单分子磁体Fe 4 中的自旋极化输运。我们预测该设备具有自旋滤波器效应(SFE),自旋阀效应(SVE)和负微分电阻(NDR)行为。此外,我们还发现,将单分子偶联至铅的适当化学配体是操纵自旋依赖性转运的关键因素。含有甲基配体的器件表现出近乎完美的自旋过滤器性能,效率接近100%,并且其传输以通过Fe 4 金属中心的传输为主。但是,在苯基配体的情况下,自旋滤光效果似乎降低,但是随着大的磁阻比达到1800%,自旋阀效果显着增强。这可能归因于苯基配体在介导运输中的阻断作用。我们的发现表明,这种同时具有SVE,NDR和高SFE的多功能分子器件将是分子器件自旋电子学的极佳候选者。

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