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Spin-Crossover in Supramolecular Iron(II)–2,6-bis(1H-Pyrazol-1-yl)pyridine Complexes: Toward Spin-State Switchable Single-Molecule Junctions

[Image: see text] Spin-crossover (SCO) active iron(II) complexes are an integral class of switchable and bistable molecular materials. Spin-state switching properties of the SCO complexes have been studied in the bulk and single-molecule levels to progress toward fabricating molecule-based switching...

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Autores principales: Kuppusamy, Senthil Kumar, Mizuno, Asato, García-Fuente, Amador, van der Poel, Sebastiaan, Heinrich, Benoît, Ferrer, Jaime, van der Zant, Herre S. J., Ruben, Mario
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9088905/
https://www.ncbi.nlm.nih.gov/pubmed/35559184
http://dx.doi.org/10.1021/acsomega.1c07217
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author Kuppusamy, Senthil Kumar
Mizuno, Asato
García-Fuente, Amador
van der Poel, Sebastiaan
Heinrich, Benoît
Ferrer, Jaime
van der Zant, Herre S. J.
Ruben, Mario
author_facet Kuppusamy, Senthil Kumar
Mizuno, Asato
García-Fuente, Amador
van der Poel, Sebastiaan
Heinrich, Benoît
Ferrer, Jaime
van der Zant, Herre S. J.
Ruben, Mario
author_sort Kuppusamy, Senthil Kumar
collection PubMed
description [Image: see text] Spin-crossover (SCO) active iron(II) complexes are an integral class of switchable and bistable molecular materials. Spin-state switching properties of the SCO complexes have been studied in the bulk and single-molecule levels to progress toward fabricating molecule-based switching and memory elements. Supramolecular SCO complexes featuring anchoring groups for metallic electrodes, for example, gold (Au), are ideal candidates to study spin-state switching at the single-molecule level. In this study, we report on the spin-state switching characteristics of supramolecular iron(II) complexes 1 and 2 composed of functional 4-([2,2′-bithiophen]-5-ylethynyl)-2,6-di(1H-pyrazol-1-yl)pyridine (L1) and 4-(2-(5-(5-hexylthiophen-2-yl)thiophen-2-yl)ethynyl)-2,6-di(1H-pyrazol-1-yl)pyridine (L2) ligands, respectively. Density functional theory (DFT) studies revealed stretching-induced spin-state switching in a molecular junction composed of complex 1, taken as a representative example, and gold electrodes. Single-molecule conductance traces revealed the unfavorable orientation of the complexes in the junctions to demonstrate the spin-state dependence of the conductance.
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spelling pubmed-90889052022-05-11 Spin-Crossover in Supramolecular Iron(II)–2,6-bis(1H-Pyrazol-1-yl)pyridine Complexes: Toward Spin-State Switchable Single-Molecule Junctions Kuppusamy, Senthil Kumar Mizuno, Asato García-Fuente, Amador van der Poel, Sebastiaan Heinrich, Benoît Ferrer, Jaime van der Zant, Herre S. J. Ruben, Mario ACS Omega [Image: see text] Spin-crossover (SCO) active iron(II) complexes are an integral class of switchable and bistable molecular materials. Spin-state switching properties of the SCO complexes have been studied in the bulk and single-molecule levels to progress toward fabricating molecule-based switching and memory elements. Supramolecular SCO complexes featuring anchoring groups for metallic electrodes, for example, gold (Au), are ideal candidates to study spin-state switching at the single-molecule level. In this study, we report on the spin-state switching characteristics of supramolecular iron(II) complexes 1 and 2 composed of functional 4-([2,2′-bithiophen]-5-ylethynyl)-2,6-di(1H-pyrazol-1-yl)pyridine (L1) and 4-(2-(5-(5-hexylthiophen-2-yl)thiophen-2-yl)ethynyl)-2,6-di(1H-pyrazol-1-yl)pyridine (L2) ligands, respectively. Density functional theory (DFT) studies revealed stretching-induced spin-state switching in a molecular junction composed of complex 1, taken as a representative example, and gold electrodes. Single-molecule conductance traces revealed the unfavorable orientation of the complexes in the junctions to demonstrate the spin-state dependence of the conductance. American Chemical Society 2022-04-14 /pmc/articles/PMC9088905/ /pubmed/35559184 http://dx.doi.org/10.1021/acsomega.1c07217 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Kuppusamy, Senthil Kumar
Mizuno, Asato
García-Fuente, Amador
van der Poel, Sebastiaan
Heinrich, Benoît
Ferrer, Jaime
van der Zant, Herre S. J.
Ruben, Mario
Spin-Crossover in Supramolecular Iron(II)–2,6-bis(1H-Pyrazol-1-yl)pyridine Complexes: Toward Spin-State Switchable Single-Molecule Junctions
title Spin-Crossover in Supramolecular Iron(II)–2,6-bis(1H-Pyrazol-1-yl)pyridine Complexes: Toward Spin-State Switchable Single-Molecule Junctions
title_full Spin-Crossover in Supramolecular Iron(II)–2,6-bis(1H-Pyrazol-1-yl)pyridine Complexes: Toward Spin-State Switchable Single-Molecule Junctions
title_fullStr Spin-Crossover in Supramolecular Iron(II)–2,6-bis(1H-Pyrazol-1-yl)pyridine Complexes: Toward Spin-State Switchable Single-Molecule Junctions
title_full_unstemmed Spin-Crossover in Supramolecular Iron(II)–2,6-bis(1H-Pyrazol-1-yl)pyridine Complexes: Toward Spin-State Switchable Single-Molecule Junctions
title_short Spin-Crossover in Supramolecular Iron(II)–2,6-bis(1H-Pyrazol-1-yl)pyridine Complexes: Toward Spin-State Switchable Single-Molecule Junctions
title_sort spin-crossover in supramolecular iron(ii)–2,6-bis(1h-pyrazol-1-yl)pyridine complexes: toward spin-state switchable single-molecule junctions
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9088905/
https://www.ncbi.nlm.nih.gov/pubmed/35559184
http://dx.doi.org/10.1021/acsomega.1c07217
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