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Ab initio correlation effects on the electronic and transport properties of metal(II)-phthalocyanine-based devices

机译:从头算关系对基于金属(II)-酞菁的器件的电子和传输性能的影响

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摘要

Using first-principles calculations in the framework of density functional theory, we investigated the electronic and transport properties of metal(II)-phthalocyanine (M(II) Pc) systems, both in a single-molecule configuration and in a model device geometry. In particular, using copper(II)-Pc and manganese(II)-Pc as prototypical examples, we studied how electronic correlations on the central metal ion influence the analysis of the electronic structure of the system and we demonstrated that the choice of the exchange-correlation functional, also beyond the standard local or gradient corrected level, is of crucial importance for a correct interpretation of the data. Finally, our electronic transport simulations have shown that M(II) Pc-based devices can act selectively as molecular conductors, as in the case of copper, or as spin valves, as in the case of manganese, demonstrating once more the great potential of these systems for molecular nanoelectronics applications.
机译:在密度泛函理论的框架内使用第一原理计算,我们研究了金属(II)-酞菁(M(II)Pc)系统的电子和输运性质,无论是在单分子构造中还是在模型装置几何中。特别是,以铜(II)-Pc和锰(II)-Pc为例,我们研究了中心金属离子上的电子相关性如何影响系统电子结构的分析,并证明了交换的选择-相关函数,也超出了标准的局部或梯度校正水平,对于正确解释数据至关重要。最后,我们的电子传输模拟结果表明,基于M(II)Pc的器件可以选择性地充当分子导体(如铜)或自旋阀(如锰),再次证明了其巨大的潜力。这些系统用于分子纳米电子应用。

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