Chiral Single-Molecule Potentiometers Based on Stapled ortho- Oligo(phenylene)ethynylenes
- PMID: 36806838
- DOI: 10.1002/anie.202218640
Chiral Single-Molecule Potentiometers Based on Stapled ortho- Oligo(phenylene)ethynylenes
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.
Keywords: Chiroptical Properties; Helical Potentiometer; Scanning Tunneling Microscope; Spin Filtering; Transport Calculations.
© 2023 The Authors. Angewandte Chemie International Edition published by Wiley-VCH GmbH.
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- CEX2018-000805-M/MICIN
- 'Severo Ochoa' Programme for Center of Excelence in R&D (CEX2020-001039-S)/MICIN
- PID2021-125604NB-I00/MCIN
- PID2021-127964NB-C21/MCIN
- PID2020-113059GB-C21/MCIN
- PID2021-127964NB-C22/MCIN
- FPU16/02597/MCIN
- SI3/PJI/2021-00191/Universidad Autonoma de Madrid
- S2018/NMT-4321/Comunidad de Madrid
- Atracción de Talento grant 2019-T1/IND-16384/Comunidad de Madrid
- PID2019-109539GB-C43/Ministerio de Ciencia e Innovación
- Programa Prometeo/2021/01/Conselleria de Cultura, Educación y Ciencia, Generalitat Valenciana
- P20_00162/Junta de Andalucia
- Visiting Scholar Program/Universidad de Granada
- Funding for open access charge: CBUA/Universidad de Granada
- 2017A4XRCA/Italian MIUR
- W. M. Keck Foundation
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