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Magnetic subunits within a single molecule–surface hybrid

机译:单分子-表面杂合体中的磁性亚基

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Magnetic molecule–surface hybrids are ideal building blocks for molecular spintronic devices due to their appealing tailorable magnetic properties and nanoscale size. So far, assemblies of interacting molecular-surface hybrids needed for spintronic functionality were generated by depositing aromatic molecules onto transition-metal surfaces, resulting in a random arrangement of hybrid magnets due to the inherent and strong hybridization. Here, we demonstrate the formation of multiple intramolecular subunits within a single molecule–surface hybrid by means of spin-polarized scanning tunneling microscopy experiments and ab initio density functional theory calculations. This novel effect is realized by depositing a polycyclic aromatic molecule on a magnetic surface. A highly asymmetric chiral adsorption position induces different structural, electronic, and magnetic properties in each aromatic ring of the molecule. In particular, the induced molecular spin polarization near the Fermi energy varies among the rings due to site- and spin-dependent molecule–surface hybridization. Our results showcase a possible organic chemistry route of tailoring geometrically well-defined assemblies of magnetically distinguishable subunits in molecule–surface hybrids.
机译:磁性分子-表面杂化物由于具有吸引力的可定制的磁性和纳米级尺寸,因此是分子自旋电子器件的理想构建基块。到目前为止,通过将芳族分子沉积到过渡金属表面上,生成了自旋电子学功能所需的相互作用的分子-表面杂化体的组装体,由于固有的强杂化作用,导致杂化磁体的随机排列。在这里,我们通过自旋极化扫描隧道显微镜实验和从头算密度函数理论计算,证明了一个分子-表面杂交物中多个分子内亚基的形成。通过将多环芳族分子沉积在磁性表面上可以实现这种新颖的效果。高度不对称的手性吸附位置会在分子的每个芳环中诱导不同的结构,电子和磁性。特别地,由于位点和自旋依赖性分子-表面杂交,在费米能量附近的诱导的分子自旋极化在环之间变化。我们的结果显示了一种可能的有机化学路线,该路线可以定制分子-表面杂化物中磁性可区分的亚基的几何定义明确的组装。

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