论文标题

三角形二聚体中的集体全碳磁性

Collective All-Carbon Magnetism in Triangulene Dimers

论文作者

Mishra, Shantanu, Beyer, Doreen, Eimre, Kristjan, Ortiz, Ricardo, Fernandez-Rossier, Joaquin, Berger, Reinhard, Groening, Oliver, Pignedoli, Carlo A., Fasel, Roman, Feng, Xinliang, Ruffieux, Pascal

论文摘要

三角形曲折纳米仪,例如三角形及其延伸的同源物,已广泛关注分子旋转的有机纳米磁铁,并可以作为具有远距离磁性秩序的高旋转网络的建立 - 具有巨大的基本和技术相关性。作为迈向这些线路的第一步,我们介绍了在共价键合的三角形二聚体中磁性的地下合成和原则的实验证明。 Au(111)上理性设计的前体分子的表面反应导致三角形二聚体的选择性形成,其中三角形单元通过其少数sublattice原子直接连接,或者通过1,4-苯基间隔物分离。二聚体的化学结构的特征是键合扫描隧道显微镜。扫描隧道光谱和非弹性电子隧道光谱测量结果揭示了二聚体中的集体单线旋转激发,表明有效的三角之间磁耦合。

Triangular zigzag nanographenes, such as triangulene and its pi-extended homologues, have received widespread attention as organic nanomagnets for molecular spintronics, and may serve as building blocks for high-spin networks with long-range magnetic order - of immense fundamental and technological relevance. As a first step toward these lines, we present the on-surface synthesis and a proof-of-principle experimental study of magnetism in covalently bonded triangulene dimers. On-surface reactions of rationally-designed precursor molecules on Au(111) lead to the selective formation of triangulene dimers in which the triangulene units are either directly connected through their minority sublattice atoms, or are separated via a 1,4-phenylene spacer. The chemical structures of the dimers have been characterized by bond-resolved scanning tunneling microscopy. Scanning tunneling spectroscopy and inelastic electron tunneling spectroscopy measurements reveal collective singlet-triplet spin excitations in the dimers, demonstrating efficient inter-triangulene magnetic coupling.

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