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探究与拓扑态耦合的单个 MnPc 分子的电子性质。

Probing the electronic properties of individual MnPc molecules coupled to topological states.

机构信息

Physikalisches Institut, Experimentelle Physik 2, Universität Würzburg , Am Hubland, 97074 Würzburg, Germany.

出版信息

Nano Lett. 2014 Sep 10;14(9):5092-6. doi: 10.1021/nl5017893. Epub 2014 Aug 14.

Abstract

Hybrid organic/inorganic interfaces have been widely reported to host emergent properties that go beyond those of their single constituents. Coupling molecules to the recently discovered topological insulators, which possess linearly dispersing and spin-momentum-locked Dirac fermions, may offer a promising platform toward new functionalities. Here, we report a scanning tunneling microscopy and spectroscopy study of the prototypical interface between MnPc molecules and a Bi2Te3 surface. MnPc is found to bind stably to the substrate through its central Mn atom. The adsorption process is only accompanied by a minor charge transfer across the interface, resulting in a moderately n-doped Bi2Te3 surface. More remarkably, topological states remain completely unaffected by the presence of the molecules, as evidenced by the absence of scattering patterns around adsorption sites. Interestingly, we show that, while the HOMO and LUMO orbitals closely resemble those of MnPc in the gas phase, a new hybrid state emerges through interaction with the substrate. Our results pave the way toward hybrid organic-topological insulator heterostructures, which may unveil a broad range of exciting and unknown phenomena.

摘要

混合有机/无机界面被广泛报道能承载超越其单一成分的新兴特性。将分子与最近发现的拓扑绝缘体耦合,这些拓扑绝缘体具有线性分散和自旋动量锁定的狄拉克费米子,可能为新功能提供了一个有前途的平台。在这里,我们报告了 MnPc 分子与 Bi2Te3 表面之间典型界面的扫描隧道显微镜和光谱研究。MnPc 通过其中心 Mn 原子稳定地结合到基底上。吸附过程仅伴随着界面上的少量电荷转移,导致 Bi2Te3 表面适度的 n 掺杂。更显著的是,尽管分子的存在,拓扑状态仍然完全不受影响,这从吸附位点周围没有散射模式可以证明。有趣的是,我们表明,虽然 HOMO 和 LUMO 轨道在气相中与 MnPc 非常相似,但通过与基底的相互作用会出现一个新的杂化状态。我们的结果为混合有机-拓扑绝缘体异质结构铺平了道路,这可能揭示出广泛的令人兴奋和未知的现象。

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