Tuning the interactions between electron spins in fullerene-based triad systems

A series of six fullerene–linker–fullerene triads have been prepared by the stepwise addition of the fullerene cages to bridging moieties thus allowing the systematic variation of fullerene cage (C60 or C70) and linker (oxalate, acetate or terephthalate) and enabling precise control over the inter-f...

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Main Authors: Maria A. Lebedeva, Thomas W. Chamberlain, E. Stephen Davies, Bradley E. Thomas, Martin Schröder, Andrei N. Khlobystov
Format: Article
Language:English
Published: Beilstein-Institut 2014-02-01
Series:Beilstein Journal of Organic Chemistry
Subjects:
EPR
Online Access:https://doi.org/10.3762/bjoc.10.31
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spelling doaj-fca8dc75060349b5a2c4dd7796fa601d2021-03-02T10:05:00ZengBeilstein-InstitutBeilstein Journal of Organic Chemistry1860-53972014-02-0110133234310.3762/bjoc.10.311860-5397-10-31Tuning the interactions between electron spins in fullerene-based triad systemsMaria A. Lebedeva0Thomas W. Chamberlain1E. Stephen Davies2Bradley E. Thomas3Martin Schröder4Andrei N. Khlobystov5School of Chemistry, University of Nottingham, Nottingham, NG7 2RD, UKSchool of Chemistry, University of Nottingham, Nottingham, NG7 2RD, UKSchool of Chemistry, University of Nottingham, Nottingham, NG7 2RD, UKSchool of Chemistry, University of Nottingham, Nottingham, NG7 2RD, UKSchool of Chemistry, University of Nottingham, Nottingham, NG7 2RD, UKSchool of Chemistry, University of Nottingham, Nottingham, NG7 2RD, UKA series of six fullerene–linker–fullerene triads have been prepared by the stepwise addition of the fullerene cages to bridging moieties thus allowing the systematic variation of fullerene cage (C60 or C70) and linker (oxalate, acetate or terephthalate) and enabling precise control over the inter-fullerene separation. The fullerene triads exhibit good solubility in common organic solvents, have linear geometries and are diastereomerically pure. Cyclic voltammetric measurements demonstrate the excellent electron accepting capacity of all triads, with up to 6 electrons taken up per molecule in the potential range between −2.3 and 0.2 V (vs Fc+/Fc). No significant electronic interactions between fullerene cages are observed in the ground state indicating that the individual properties of each C60 or C70 cage are retained within the triads. The electron–electron interactions in the electrochemically generated dianions of these triads, with one electron per fullerene cage were studied by EPR spectroscopy. The nature of electron–electron coupling observed at 77 K can be described as an equilibrium between doublet and triplet state biradicals which depends on the inter-fullerene spacing. The shorter oxalate-bridged triads exhibit stronger spin–spin coupling with triplet character, while in the longer terephthalate-bridged triads the intramolecular spin–spin coupling is significantly reduced.https://doi.org/10.3762/bjoc.10.31carbon nanomaterialselectrochemistryEPRfullerene dimersfullerene triadsspin–spin interactions
collection DOAJ
language English
format Article
sources DOAJ
author Maria A. Lebedeva
Thomas W. Chamberlain
E. Stephen Davies
Bradley E. Thomas
Martin Schröder
Andrei N. Khlobystov
spellingShingle Maria A. Lebedeva
Thomas W. Chamberlain
E. Stephen Davies
Bradley E. Thomas
Martin Schröder
Andrei N. Khlobystov
Tuning the interactions between electron spins in fullerene-based triad systems
Beilstein Journal of Organic Chemistry
carbon nanomaterials
electrochemistry
EPR
fullerene dimers
fullerene triads
spin–spin interactions
author_facet Maria A. Lebedeva
Thomas W. Chamberlain
E. Stephen Davies
Bradley E. Thomas
Martin Schröder
Andrei N. Khlobystov
author_sort Maria A. Lebedeva
title Tuning the interactions between electron spins in fullerene-based triad systems
title_short Tuning the interactions between electron spins in fullerene-based triad systems
title_full Tuning the interactions between electron spins in fullerene-based triad systems
title_fullStr Tuning the interactions between electron spins in fullerene-based triad systems
title_full_unstemmed Tuning the interactions between electron spins in fullerene-based triad systems
title_sort tuning the interactions between electron spins in fullerene-based triad systems
publisher Beilstein-Institut
series Beilstein Journal of Organic Chemistry
issn 1860-5397
publishDate 2014-02-01
description A series of six fullerene–linker–fullerene triads have been prepared by the stepwise addition of the fullerene cages to bridging moieties thus allowing the systematic variation of fullerene cage (C60 or C70) and linker (oxalate, acetate or terephthalate) and enabling precise control over the inter-fullerene separation. The fullerene triads exhibit good solubility in common organic solvents, have linear geometries and are diastereomerically pure. Cyclic voltammetric measurements demonstrate the excellent electron accepting capacity of all triads, with up to 6 electrons taken up per molecule in the potential range between −2.3 and 0.2 V (vs Fc+/Fc). No significant electronic interactions between fullerene cages are observed in the ground state indicating that the individual properties of each C60 or C70 cage are retained within the triads. The electron–electron interactions in the electrochemically generated dianions of these triads, with one electron per fullerene cage were studied by EPR spectroscopy. The nature of electron–electron coupling observed at 77 K can be described as an equilibrium between doublet and triplet state biradicals which depends on the inter-fullerene spacing. The shorter oxalate-bridged triads exhibit stronger spin–spin coupling with triplet character, while in the longer terephthalate-bridged triads the intramolecular spin–spin coupling is significantly reduced.
topic carbon nanomaterials
electrochemistry
EPR
fullerene dimers
fullerene triads
spin–spin interactions
url https://doi.org/10.3762/bjoc.10.31
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