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Atomically precise bottom-up synthesis of π-extended [5]triangulene

机译:原子精确的自下而上合成π扩展[5]三茂铁

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The zigzag-edged triangular graphene molecules (ZTGMs) have been predicted to host ferromagnetically coupled edge states with the net spin scaling with the molecular size, which affords large spin tunability crucial for next-generation molecular spintronics. However, the scalable synthesis of large ZTGMs and the direct observation of their edge states have been long-standing challenges because of the molecules’ high chemical instability. Here, we report the bottom-up synthesis of π-extended [5]triangulene with atomic precision via surface-assisted cyclodehydrogenation of a rationally designed molecular precursor on metallic surfaces. Atomic force microscopy measurements unambiguously resolve its ZTGM-like skeleton consisting of 15 fused benzene rings, while scanning tunneling spectroscopy measurements reveal edge-localized electronic states. Bolstered by density functional theory calculations, our results show that [5]triangulenes synthesized on Au(111) retain the open-shell π-conjugated character with magnetic ground states.
机译:锯齿形的三角形石墨烯分子(ZTGM)已被预测为具有铁磁耦合的边缘态,并且分子大小的净自旋成比例,这为下一代分子自旋电子学提供了重要的自旋可调性。但是,由于大分子ZTGM具有高度的化学不稳定性,因此它们的可扩展合成以及直接观察其边缘状态一直是长期的挑战。在这里,我们报告了通过合理设计的分子前体在金属表面上的表面辅助环脱氢反应,原子精确度由下而上合成π扩展的[5] triangulene的过程。原子力显微镜测量明确地解析了其由15个稠合苯环组成的ZTGM样骨架,而扫描隧道光谱测量则揭示了边缘定位的电子态。通过密度泛函理论计算的支持,我们的结果表明,在Au(111)上合成的[5]三角烯保留了具有磁性基态的开壳π共轭特征。

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