Litcius/Paper detail

Plasmon-Driven Motion of an Individual Molecule

Tzu‐Chao Hung, Brian Kiraly, Julian H. Strik, Alexander A. Khajetoorians, Daniel Wegner

2021Nano Letters21 citationsDOIOpen Access PDF

Abstract

We demonstrate that nanocavity plasmons generated a few nanometers away from a molecule can induce molecular motion. For this, we study the well-known rapid shuttling motion of zinc phthalocyanine molecules adsorbed on ultrathin NaCl films by combining scanning tunneling microscopy (STM) and spectroscopy (STS) with STM-induced light emission. Comparing spatially resolved single-molecule luminescence spectra from molecules anchored to a step edge with isolated molecules adsorbed on the free surface, we found that the azimuthal modulation of the Lamb shift is diminished in case of the latter. This is evidence that the rapid shuttling motion is remotely induced by plasmon-molecule coupling. Plasmon-induced molecular motion may open an interesting playground to bridge the nanoscopic and mesoscopic worlds by combining molecular machines with nanoplasmonics to control directed motion of single molecules without the need for local probes.

Topics & Concepts

PlasmonScanning tunneling microscopeMoleculeMesoscopic physicsMaterials scienceNanoscopic scaleSurface plasmonSpectroscopyChemical physicsNanotechnologyLuminescenceMolecular physicsChemistryOptoelectronicsPhysicsCondensed matter physicsOrganic chemistryQuantum mechanicsMolecular Junctions and NanostructuresMechanical and Optical ResonatorsForce Microscopy Techniques and Applications