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Spin doping of individual molecules by using single-atom manipulation

机译:通过使用单原子操作自旋掺杂单个分子

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Being able to control the spin of magnetic molecules at the single-molecule level will make it possible to develop new spin-based nanotechnologies. Gate-field effects and electron and photon excitations have been used to achieve spin switching in molecules. Here, we show that atomic doping of molecules can be used to change the molecular spin. Furthermore, a scanning tunneling microscope was used to place or remove the atomic dopant on the molecule, allowing us to change the molecular spin in a controlled way. Bis(phthalocyaninato)yttrium (YPc _2) molecules deposited on an Au (111) surface keep their spin-1/2 magnetic moment due to the small molecule-substrate interaction. However, when Cs atoms were carefully placed onto YPc _2 molecules, the spin of the molecule vanished as shown by our conductance measurements and corroborated by the results of density functional theory calculations.
机译:能够在单分子水平上控制磁性分子的自旋将使开发新的基于自旋的纳米技术成为可能。栅场效应以及电子和光子激发已用于实现分子中的自旋切换。在这里,我们证明了分子的原子掺杂可以用来改变分子的自旋。此外,使用扫描隧道显微镜在分子上放置或去除原子掺杂剂,使我们能够以受控方式改变分子自旋。沉积在Au(111)表面上的双(酞菁基)钇(YPc _2)分子由于小分子与底物的相互作用而保持其自旋1/2磁矩。但是,当将Cs原子小心地放置在YPc _2分子上时,该分子的自旋消失,如我们的电导测量所示,并被密度泛函理论计算的结果所证实。

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