arXiv · 2005.00080
Electrical molecular switch addressed by chemical stimuli
Abstract
We demonstrate that the conductance switching of benzo-bis(imidazole) molecules upon protonation depends on the lateral functional groups. The protonated H-substituted molecule shows a higher conductance than the neutral one (Gpro>Gneu), while the opposite (Gneu>Gpro) is observed for a molecule laterally functionalized by amino-phenyl groups. These results are demonstrated at various scale lengths : self-assembled monolayer, tiny nanodot-molecule junction and single molecules. From ab-initio theoretical calculations, we conclude that for the H-substituted molecule, the result Gpro>Gneu is correctly explained by a reduction of the LUMO-HOMO gap, while for the amino-phenyl functionnalized molecule, the result Gneu>Gpro is consistent with a shift of HOMO, which reduces the density of states at the Fermi energy.
Explore related subjects
Keep this discovery
H. Audi, Y. Viero, N. Alwhaibi, Z. Chen, M. Iazykov, A. Heynderickx, F. Xiao, D. Guerin, C Krzeminski, I. M. Grace, C. J. Lambert, O. Siri, D. Vuillaume, S Lenfant, H. Klein. 2020-04-30. Electrical molecular switch addressed by chemical stimuli. https://doi.org/10.1039/d0nr02461a
Cite the original work for its findings. Save a collection to share your selection of sources.