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Synthesis and Single-Molecule Conductances of Neutral and Cationic Indenofluorene-Extended Tetrathiafulvalenes: Kondo Effect Molecules

[Image: see text] Development of molecules that can switch between redox states with paired and unpaired electrons is important for molecular electronics and spintronics. In this work, a selection of redox-active indenofluorene-extended tetrathiafulvalenes (IF-TTFs) with thioacetate end groups was p...

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Autores principales: Mansø, Mads, Koole, Max, Mulder, Maarten, Olavarria-Contreras, Ignacio J., Andersen, Cecilie Lindholm, Jevric, Martyn, Broman, Søren Lindbæk, Kadziola, Anders, Hammerich, Ole, van der Zant, Herre S. J., Nielsen, Mogens Brøndsted
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2016
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5038357/
https://www.ncbi.nlm.nih.gov/pubmed/27548751
http://dx.doi.org/10.1021/acs.joc.6b01579
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author Mansø, Mads
Koole, Max
Mulder, Maarten
Olavarria-Contreras, Ignacio J.
Andersen, Cecilie Lindholm
Jevric, Martyn
Broman, Søren Lindbæk
Kadziola, Anders
Hammerich, Ole
van der Zant, Herre S. J.
Nielsen, Mogens Brøndsted
author_facet Mansø, Mads
Koole, Max
Mulder, Maarten
Olavarria-Contreras, Ignacio J.
Andersen, Cecilie Lindholm
Jevric, Martyn
Broman, Søren Lindbæk
Kadziola, Anders
Hammerich, Ole
van der Zant, Herre S. J.
Nielsen, Mogens Brøndsted
author_sort Mansø, Mads
collection PubMed
description [Image: see text] Development of molecules that can switch between redox states with paired and unpaired electrons is important for molecular electronics and spintronics. In this work, a selection of redox-active indenofluorene-extended tetrathiafulvalenes (IF-TTFs) with thioacetate end groups was prepared from a readily obtainable dibromo-functionalized IF-TTF building block using palladium-catalyzed cross-coupling reactions, such as the Suzuki reaction. The end groups served as electrode anchoring groups for single-molecule conductance studies, and the molecules were subjected to mechanically controlled break-junction measurements with gold contacts and to low-bias charge transport measurements in gated three-terminal electromigration junctions. The neutral molecules showed clear conductance signatures, and somewhat surprisingly, we found that a meta–meta anchoring configuration gave a higher conductance than a para–meta configuration. We explain this behavior by “through-space” coupling between the gold electrode and the phenyl on which the anchoring group is attached. Upon charging the molecule in a gated junction, we found reproducibly a Kondo effect (zero-bias conductance) attributed to a net spin. Ready generation of radical cations was supported by cyclic voltammetry measurements, revealing stepwise formation of radical cation and dication species in solution. The first oxidation event was accompanied by association reactions as the appearance of the first oxidation peak was strongly concentration dependent.
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spelling pubmed-50383572017-08-22 Synthesis and Single-Molecule Conductances of Neutral and Cationic Indenofluorene-Extended Tetrathiafulvalenes: Kondo Effect Molecules Mansø, Mads Koole, Max Mulder, Maarten Olavarria-Contreras, Ignacio J. Andersen, Cecilie Lindholm Jevric, Martyn Broman, Søren Lindbæk Kadziola, Anders Hammerich, Ole van der Zant, Herre S. J. Nielsen, Mogens Brøndsted J Org Chem [Image: see text] Development of molecules that can switch between redox states with paired and unpaired electrons is important for molecular electronics and spintronics. In this work, a selection of redox-active indenofluorene-extended tetrathiafulvalenes (IF-TTFs) with thioacetate end groups was prepared from a readily obtainable dibromo-functionalized IF-TTF building block using palladium-catalyzed cross-coupling reactions, such as the Suzuki reaction. The end groups served as electrode anchoring groups for single-molecule conductance studies, and the molecules were subjected to mechanically controlled break-junction measurements with gold contacts and to low-bias charge transport measurements in gated three-terminal electromigration junctions. The neutral molecules showed clear conductance signatures, and somewhat surprisingly, we found that a meta–meta anchoring configuration gave a higher conductance than a para–meta configuration. We explain this behavior by “through-space” coupling between the gold electrode and the phenyl on which the anchoring group is attached. Upon charging the molecule in a gated junction, we found reproducibly a Kondo effect (zero-bias conductance) attributed to a net spin. Ready generation of radical cations was supported by cyclic voltammetry measurements, revealing stepwise formation of radical cation and dication species in solution. The first oxidation event was accompanied by association reactions as the appearance of the first oxidation peak was strongly concentration dependent. American Chemical Society 2016-08-22 2016-09-16 /pmc/articles/PMC5038357/ /pubmed/27548751 http://dx.doi.org/10.1021/acs.joc.6b01579 Text en Copyright © 2016 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Mansø, Mads
Koole, Max
Mulder, Maarten
Olavarria-Contreras, Ignacio J.
Andersen, Cecilie Lindholm
Jevric, Martyn
Broman, Søren Lindbæk
Kadziola, Anders
Hammerich, Ole
van der Zant, Herre S. J.
Nielsen, Mogens Brøndsted
Synthesis and Single-Molecule Conductances of Neutral and Cationic Indenofluorene-Extended Tetrathiafulvalenes: Kondo Effect Molecules
title Synthesis and Single-Molecule Conductances of Neutral and Cationic Indenofluorene-Extended Tetrathiafulvalenes: Kondo Effect Molecules
title_full Synthesis and Single-Molecule Conductances of Neutral and Cationic Indenofluorene-Extended Tetrathiafulvalenes: Kondo Effect Molecules
title_fullStr Synthesis and Single-Molecule Conductances of Neutral and Cationic Indenofluorene-Extended Tetrathiafulvalenes: Kondo Effect Molecules
title_full_unstemmed Synthesis and Single-Molecule Conductances of Neutral and Cationic Indenofluorene-Extended Tetrathiafulvalenes: Kondo Effect Molecules
title_short Synthesis and Single-Molecule Conductances of Neutral and Cationic Indenofluorene-Extended Tetrathiafulvalenes: Kondo Effect Molecules
title_sort synthesis and single-molecule conductances of neutral and cationic indenofluorene-extended tetrathiafulvalenes: kondo effect molecules
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5038357/
https://www.ncbi.nlm.nih.gov/pubmed/27548751
http://dx.doi.org/10.1021/acs.joc.6b01579
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