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Tetrathiafulvalenes as anchors for building highly conductive and mechanically tunable molecular junctions

Qi Zhou, Kai Song, Guanxin Zhang, Xuwei Song, Junfeng Lin, Yaping Zang, Deqing Zhang, Daoben Zhu

2022Nature Communications35 citationsDOIOpen Access PDF

Abstract

The interface between molecules and electrodes has great impact on charge transport of molecular devices. Precisely manipulating the structure and electronic coupling of electrode-molecule interface at a molecular level is very challenging. Here, we develop new molecular junctions based on tetrathiafulvalene (TTF)-fused naphthalene diimide (NDI) molecules which are anchored to gold electrodes through direct TTF-Au contacts formed via Au-S bonding. These contacts enable highly efficient orbital hybridization of gold electrodes and the conducting π-channels, yielding strong electrode-molecule coupling and remarkably high conductivity in the junctions. By further introducing additional thiohexyl (SHe) anchors to the TTF units, we develop molecular wires with multiple binding sites and demonstrate reversibly switchable electrode-molecule contacts and junction conductance through mechanical control. These findings show a superb electrode-molecule interface and provide a new strategy for precisely tunning the conductance of molecular devices towards new functions.

Topics & Concepts

ElectrodeTetrathiafulvaleneMaterials scienceMolecular wireMoleculeConductanceMolecular electronicsNanotechnologyCoupling (piping)Molecular switchChemical physicsChemistryPhysical chemistryCondensed matter physicsComposite materialOrganic chemistryPhysicsMolecular Junctions and NanostructuresOrganic Electronics and PhotovoltaicsConducting polymers and applications
Tetrathiafulvalenes as anchors for building highly conductive and mechanically tunable molecular junctions | Litcius