Strong signature of electron-vibration coupling in molecules on Ag(111) triggered by tip-gated discharging

Author:

Li ChaoORCID,Kaspar Christoph,Zhou Ping,Liu Jung-ChingORCID,Chahib Outhmane,Glatzel ThiloORCID,Häner Robert,Aschauer UlrichORCID,Decurtins Silvio,Liu Shi-XiaORCID,Thoss Michael,Meyer ErnstORCID,Pawlak RémyORCID

Abstract

AbstractElectron-vibration coupling is of critical importance for the development of molecular electronics, spintronics, and quantum technologies, as it affects transport properties and spin dynamics. The control over charge-state transitions and subsequent molecular vibrations using scanning tunneling microscopy typically requires the use of a decoupling layer. Here we show the vibronic excitations of tetrabromotetraazapyrene (TBTAP) molecules directly adsorbed on Ag(111) into an orientational glassy phase. The electron-deficient TBTAP is singly-occupied by an electron donated from the substrate, resulting in a spin 1/2 state, which is confirmed by a Kondo resonance. The TBTAP•− discharge is controlled by tip-gating and leads to a series of peaks in scanning tunneling spectroscopy. These occurrences are explained by combining a double-barrier tunneling junction with a Franck-Condon model including molecular vibrational modes. This work demonstrates that suitable precursor design enables gate-dependent vibrational excitations of molecules on a metal, thereby providing a method to investigate electron-vibration coupling in molecular assemblies without a decoupling layer.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

Reference61 articles.

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