Electrochemical illumination of thienyl and ferrocenyl chromium(0) Fischer carbene complexes

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dc.contributor.author Van der Westhuizen, Belinda
dc.contributor.author Swarts, Pieter J.
dc.contributor.author Strydom, Ian
dc.contributor.author Liles, David C.
dc.contributor.author Fernandez, Israel
dc.contributor.author Swarts, Jannie C.
dc.contributor.author Bezuidenhout, Daniela Ina
dc.date.accessioned 2013-05-14T13:01:29Z
dc.date.available 2014-02-05T00:20:04Z
dc.date.issued 2013-02-05
dc.description.abstract A series of ferrocenyl and thienyl mono- and biscarbene chromium(0) complexes 1–6 were synthesised. The complexes were characterised both spectroscopically and electrochemically, and the single crystal X-ray structure of 3 was determined. Electrochemical measurements in CH2Cl2 revealed that the carbene double bond of 1–6 is reduced to an anion radical, −Cr–C˙ at formal reduction potentials <−1.7 V vs. FcH/FcH+. A computational study on 1, 3 and 4 (B3LYP/def2-SVP level) is consistent with electrochemical results in showing that electrochemically generated chromium(I) species may be further electrochemically irreversibly oxidised to chromium(II) at Epa > 0.95 V. The reactivity towards follow-up chemical reactions of the anodically produced Cr(II) species is much higher than the reactivity of the cathodically produced radical anions as the latter was still observably reoxidised to the parent CrvC species at fast scan rates. The ferrocenyl group is oxidised electrochemically reversibly to ferrocenium at larger potentials than the electrochemically reversible oxidation of the Cr(0) centre to Cr(I). That all redox centres in 1–6 are involved in one-electron transfer steps was confirmed by comparing the ferrocenyl voltammetric wave with those of the other redox centres in linear sweep voltammetric experiments. The ferrocenyl group was electrochemically shown to stabilise the CrvC centre almost as much as the NHBu, and much more than the ethoxy and thienyl groups. en
dc.description.librarian am2013 en
dc.description.librarian ai2013 en
dc.description.sponsorship This work is supported by the National Research Foundation, (DIB, Grant number 76226; JCS, Grant number 81829). I. F. acknowledges the Spanish MICINN and CAM (Grants CTQ2010-20714-CO2-01/BQU, Consolider-Ingenio 2010, CSD2007-00006, S2009/PPQ-1634). en
dc.description.uri http://pubs.rsc.org en
dc.identifier.citation Van der Westhuizen, B, Swarts, PJ, Strydom, I, Liles, DC, Fernandez, I, Swarts, JC & Bezuidenhout, DI 2013, 'Electrochemical illumination of thienyl and ferrocenyl chromium(0) Fischer carbene complexes', Dalton Transactions, vol. 42, pp. 5367-5378. en
dc.identifier.issn 1477-9226 (print)
dc.identifier.issn 1364-5447 (online)
dc.identifier.other 10.1039/c3dt32913e
dc.identifier.uri http://hdl.handle.net/2263/21483
dc.language.iso en en
dc.publisher Royal Society of Chemistry en
dc.rights © The Royal Society of Chemistry 2013. en
dc.subject Thienyl mono- and biscarbene chromium(0) complexes en
dc.subject Ferrocenyl en
dc.subject.lcsh Chromium compounds en
dc.subject.lcsh Ferrochrome en
dc.subject.lcsh Carbenes (Methylene compounds) en
dc.title Electrochemical illumination of thienyl and ferrocenyl chromium(0) Fischer carbene complexes en
dc.type Article en


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