Ajayi Tolulope Michael, Singh Vijay, Latt Kyaw Zin, Sarkar Sanjoy, Cheng Xinyue, Premarathna Sineth, Dandu Naveen K, Wang Shaoze, Movahedifar Fahimeh, Wieghold Sarah, Shirato Nozomi, Rose Volker, Curtiss Larry A, Ngo Anh T, Masson Eric, Hla Saw Wai
Nanoscience & Technology Division, Argonne National laboratory, Lemont, IL, 60439, USA.
Nanoscale & Quantum Phenomena Institute, and Department of Physics & Astronomy, Ohio University, Athens, OH, 45701, USA.
Nat Commun. 2022 Oct 22;13(1):6305. doi: 10.1038/s41467-022-33897-3.
Complexes containing rare-earth ions attract great attention for their technological applications ranging from spintronic devices to quantum information science. While charged rare-earth coordination complexes are ubiquitous in solution, they are challenging to form on materials surfaces that would allow investigations for potential solid-state applications. Here we report formation and atomically precise manipulation of rare-earth complexes on a gold surface. Although they are composed of multiple units held together by electrostatic interactions, the entire complex rotates as a single unit when electrical energy is supplied from a scanning tunneling microscope tip. Despite the hexagonal symmetry of the gold surface, a counterion at the side of the complex guides precise three-fold rotations and 100% control of their rotational directions is achieved using a negative electric field from the scanning probe tip. This work demonstrates that counterions can be used to control dynamics of rare-earth complexes on materials surfaces for quantum and nanomechanical applications.
包含稀土离子的配合物因其从自旋电子器件到量子信息科学等技术应用而备受关注。虽然带电的稀土配位配合物在溶液中普遍存在,但要在材料表面形成它们却具有挑战性,而材料表面的形成对于潜在的固态应用研究至关重要。在此,我们报告了在金表面上稀土配合物的形成及原子级精确操控。尽管它们由通过静电相互作用结合在一起的多个单元组成,但当从扫描隧道显微镜尖端提供电能时,整个配合物会作为一个单一单元旋转。尽管金表面具有六边形对称性,但配合物一侧的抗衡离子引导精确的三重旋转,并且利用扫描探针尖端的负电场实现了对其旋转方向的100%控制。这项工作表明,抗衡离子可用于控制材料表面上稀土配合物的动力学,以用于量子和纳米机械应用。