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Modulation of the molecular spintronic properties of adsorbed copper corroles

机译:吸附铜铜分子的分子自旋电子性质的调控

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摘要

The ability to modulate the spin states of adsorbed molecules is in high demand for molecular spintronics applications. Here, we demonstrate that the spin state of a corrole complex can be tuned by expanding its fused ring as a result of the modification to the d–π interaction between the metal and ligand. A bicyclo[2.2.2]octadiene-fused copper corrole can readily be converted into a tetrabenzocorrole radical on an Au(111) substrate during the sublimation process. In the scanning tunnelling spectroscopy spectrum, a sharp Kondo resonance appears near the Fermi level on the corrole ligand of the tetrabenzocorrole molecule. In contrast, a non-fused-ring-expanded copper corrole molecule, copper 5,10,15-triphenylcorrole, shows no such Kondo feature. Mapping of the Kondo resonance demonstrates that the spin distribution of the tetrabenzocorrole molecule can be further modified by the rotation of the meso-aryl groups, in a manner that could lead to applications in molecular spintronics.
机译:调节分子自旋电子学应用的能力非常需要调节吸附分子的自旋态。在这里,我们证明,由于对金属与配体之间的d–π相互作用进行了修饰,因此可以通过扩展其稠合环来调节复合物的自旋状态。在升华过程中,双环[2.2.2]辛二烯稠合的铜铜盐很容易在Au(111)基底上转化为四苯并铜盐基。在扫描隧道光谱中,在四苯并Corrole分子的Corrole配体上的Fermi能级附近出现了尖锐的Kondo共振。相比之下,非稠环扩环的铜腐蚀分子,即5,10,15-三苯基铜,则没有这种近藤特征。 Kondo共振的作图表明,可以通过介孔芳基的旋转进一步修饰四苯并甲氧基分子的自旋分布,其方式可能导致在分子自旋电子学中的应用。

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