paper

Graphene/-RuCl: An Emergent 2D Plasmonic Interface

arXiv:2007.07147 · doi:10.1021/acs.nanolett.0c03466

Abstract

Work function-mediated charge transfer in graphene/-RuCl heterostructures has been proposed as a strategy for generating highly-doped 2D interfaces. In this geometry, graphene should become sufficiently doped to host surface and edge plasmon-polaritons (SPPs and EPPs, respectively). Characterization of the SPP and EPP behavior as a function of frequency and temperature can be used to simultaneously probe the magnitude of interlayer charge transfer while extracting the optical response of the interfacial doped -RuCl. We accomplish this using scanning near-field optical microscopy (SNOM) in conjunction with first-principles DFT calculations. This reveals massive interlayer charge transfer (2.7 10 cm) and enhanced optical conductivity in -RuCl as a result of significant electron doping. Our results provide a general strategy for generating highly-doped plasmonic interfaces in the 2D limit in a scanning probe-accessible geometry without need of an electrostatic gate.

22 pages, 5 figures

Graphene/$α$-RuCl$_3$: An Emergent 2D Plasmonic Interface · wovepaper