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High spin-filter efficiency and Seebeck effect through spin-crossover iron-benzene complex

机译:通过自旋交联的铁-苯配合物实现高自旋过滤效率和塞贝克效应

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Electronic structures and coherent quantum transport properties are explored for spin-crossover molecule iron-benzene Fe(Bz)(2) using density functional theory combined with non-equilibrium Green's function. High-and low-spin states are investigated for two different lead-molecule junctions. It is found that the asymmetrical T-shaped contact junction in the high-spin state behaves as an efficient spin filter while it has a smaller conductivity than that in the low-spin state. Large spin Seebeck effect is also observed in asymmetrical T-shaped junction. Spin-polarized properties are absent in the symmetrical H-shaped junction. These findings strongly suggest that both the electronic and contact configurations play significant roles in molecular devices and metal-benzene complexes are promising materials for spintronics and thermo-spintronics. Published by AIP Publishing.
机译:利用密度泛函理论结合非平衡格林函数,研究了自旋交叉分子铁-苯铁(Bz)(2)的电子结构和相干量子传输性质。研究了两种不同的铅-分子结的高和低自旋状态。发现在高自旋状态下的非对称T形接触结表现为有效的自旋滤波器,而其电导率比在低自旋状态下小。在不对称的T形结中也观察到了大的自旋塞贝克效应。在对称的H形结中没有自旋极化特性。这些发现强烈表明,电子结构和接触结构在分子器件中均起着重要作用,而金属-苯配合物是自旋电子学和热自旋电子学的有前途的材料。由AIP Publishing发布。

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