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Survival of spin state in magnetic porphyrins contacted by graphene nanoribbons

机译:石墨烯纳米带接触的磁性卟啉中自旋态的存活

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摘要

We report on the construction and magnetic characterization of a fully functional hybrid molecular system composed of a single magnetic porphyrin molecule bonded to graphene nanoribbons with atomically precise contacts. We use on-surface synthesis to direct the hybrid creation by combining two molecular precursors on a gold surface. High-resolution imaging with a scanning tunneling microscope finds that the porphyrin core fuses into the graphene nanoribbons through the formation of new carbon rings at chemically predefined positions. These ensure the stability of the hybrid and the extension of the conjugated character of the ribbon into the molecule. By means of inelastic tunneling spectroscopy, we prove the survival of the magnetic functionality of the contacted porphyrin. The molecular spin appears unaffected by the graphenoid electrodes, and we simply observe that the magnetic anisotropy appears modified depending on the precise structure of the contacts.
机译:我们报告的全功能混合分子系统的组成和磁性表征,该系统由结合到具有原子精确接触的石墨烯纳米带的单个磁性卟啉分子组成。通过在金表面上结合两个分子前体,我们使用表面合成来指导杂化的产生。使用扫描隧道显微镜的高分辨率成像发现,卟啉核通过在化学上预定的位置形成新的碳环而融合到石墨烯纳米带中。这些确保了杂化物的稳定性以及带的共轭特征延伸到分子中。通过非弹性隧道光谱法,我们证明了接触卟啉的磁性功能的存在。分子自旋似乎不受石墨烯电极的影响,我们仅观察到磁各向异性出现了改变,这取决于触点的精确结构。

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