Data di Pubblicazione:
2023
Abstract:
We report on the chemical design of chiral molecular junctions with stress-dependent conductance, whose helicity is maintained during the stretching of a single molecule junction due to the stapling of both ends of the inner helix. In the reported compounds, different conductive pathways are observed, with clearly different conductance values and plateau-length distributions, attributed to different conformations of the helical structures. The large chiro-optical responses and the potential use of these molecules as unimolecular spin filters have been theoretically proved using state-of-the-art Density Functional Theory (DFT) calculations, including a fully ab-initio estimation of the CISS-originating spin polarization which is done, for the first time, for a realistic molecular system.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Chiroptical Properties; Helical Potentiometer; Scanning Tunneling Microscope; Spin Filtering; Transport Calculations
Elenco autori:
Ortuño, Ana M; Reiné, Pablo; Álvarez de Cienfuegos, Luis; Márquez, Irene R; Dednam, Wynand; Lombardi, Enrico B; Palacios, Juan J; Leary, Edmund; Longhi, Giovanna; Mujica, Vladimiro; Millán, Alba; González, M Teresa; Zotti, Linda A; Miguel, Delia; Cuerva, Juan M
Link alla scheda completa:
Link al Full Text:
Pubblicato in: