论文标题

电子束在石墨烯中的杂原子PT-SI结构的引入

Electron-beam Introduction of Heteroatomic Pt-Si Structures in Graphene

论文作者

Dyck, Ondrej, Zhang, Cheng, Rack, Philip D., Fowlkes, Jason D., Sumpter, Bobby, Lupini, Andrew R., Kalinin, Sergei V., Jesse, Stephen

论文摘要

电子梁(电子束)操纵单掺杂原子在被像差校正的扫描透射电子显微镜中正在成为一种定向原子运动和原子原子组装的方法。到目前为止,在离子半径方面,掺杂剂物种仅限于与碳紧密匹配的原子,并且能够与石墨烯晶格中的碳原子共价键合。到目前为止,SI仅证明了将原位掺杂剂插入到石墨烯晶格中,这在这种材料中是普遍存在的污染物。在这里,我们使用石墨烯上的电子束沉积的PT作为宿主系统实现了PT原子的原位操纵及其将其插入到石墨烯宿主矩阵中。我们进一步证明了一种稳定Pt原子的机制,通过形成连接到石墨烯表面的Si稳定的PT杂色簇的形成。这项研究为电子束组装方法的通用性提供了证据,为通过直接组装探索集群化学的途径开了一个途径。

Electron-beam (e-beam) manipulation of single dopant atoms in an aberration-corrected scanning transmission electron microscope is emerging as a method for directed atomic motion and atom-by-atom assembly. Until now, the dopant species have been limited to atoms closely matched to carbon in terms of ionic radius and capable of strong covalent bonding with carbon atoms in the graphene lattice. In situ dopant insertion into a graphene lattice has thus far been demonstrated only for Si, which is ubiquitously present as a contaminant in this material. Here, we achieve in situ manipulation of Pt atoms and their insertion into the graphene host matrix using the e-beam deposited Pt on graphene as a host system. We further demonstrate a mechanism for stabilization of the Pt atom, enabled through the formation of Si-stabilized Pt heteroatomic clusters attached to the graphene surface. This study provides evidence toward the universality of the e-beam assembly approach, opening a pathway for exploring cluster chemistry through direct assembly.

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