Substituent effects on the electrochemical, spectroscopic, and structural properties of Fischer mono- and biscarbene complexes of Chromium(0)

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dc.contributor.author Van der Westhuizen, Belinda
dc.contributor.author Swarts, Pieter J.
dc.contributor.author Van Jaarsveld, Louise M.
dc.contributor.author Liles, David C.
dc.contributor.author Siegert, Uwe
dc.contributor.author Swarts, Jannie C.
dc.contributor.author Fernandez, Israel
dc.contributor.author Bezuidenhout, Daniela Ina
dc.date.accessioned 2013-11-27T08:13:09Z
dc.date.available 2014-12-01T00:20:07Z
dc.date.issued 2013
dc.description.abstract A series of ten ferrocenyl, furyl, and thienyl mono- and biscarbene chromium(0) complexes were synthesized and characterized spectroscopically and electrochemically. The single crystal structure of the biscarbene complex [(CO)5Cr═C(OEt)-Fu′-(OEt)C═Cr(CO)5] (4a) was determined: C20H12Cr2O13; triclinic; P1̅; a = 6.2838(5), b = 12.6526(9), c = 29.1888(19) Å, α = 89.575(2), β = 88.030(2), γ = 87.423(2)°; Z = 4. Results from an electrochemical study in CH2Cl2 were mutually consistent with a computational study in showing 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+. The Cr centers are oxidized in two successive one electron transfer steps to Cr(II) via the Cr(I) intermediate. Only Cr(I) oxidation is electrochemically irreversible. Dicationic Cr(II) species formed upon two consecutive one-electron oxidation processes are characterized by a peculiar bonding situation as they are stabilized by genuine CH···Cr agostic interactions. With respect to aryl substituents, carbene redox processes occurred at the lowest potentials for ferrocene derivatives followed by furan complexes. Redox process in the thiophene derivatives occurred at the highest potentials. This result is mutually consistent with a 13C NMR study that showed the Cr═C functionality of furyl complexes were more shielded than thienyl complexes. The NHBu carbene substituent resulted in carbene complexes showing redox processes at substantially lower redox potentials than carbenes having OEt substituents. en
dc.description.librarian hb2013 en
dc.description.librarian ai2014
dc.description.sponsorship The National Research Foundation, South Africa (D.I.B., Grant number 76226; J.C.S., Grant number 81829), and the Spanish MICINN and CAM (I.F., Grants CTQ2010-20714-CO2-01/BQU, Consolider-Ingenio 2010, CSD2007-00006, S2009/PPQ-1634). en
dc.description.uri http://pubs.acs.org/journal/inocaj en
dc.identifier.citation Van der Westhuizen, B, Swarts, PJ, Van Jaarsveld, LM, Liles, DC, Siegert, U, Swarts, JC, Fernández, I & Bezuidenhout, DI 2013, Substituent effects on the electrochemical, spectroscopic, and structural properties of Fischer mono- and biscarbene complexes of Chromium(0)', Inorganic Chemistry, vol. 52, no. 11, pp. 6674-6684. en
dc.identifier.issn 0020-1669 (print)
dc.identifier.issn 1520-510X (online)
dc.identifier.other 10.1021/ic4007422
dc.identifier.uri http://hdl.handle.net/2263/32626
dc.language.iso en en
dc.publisher American Chemical Society en
dc.rights © 2013 American Chemical Society en
dc.subject Mono- and biscarbene complexes en
dc.subject.lcsh Chromium compounds en
dc.subject.lcsh Carbenes (Methylene compounds) en
dc.subject.lcsh Spectrum analysis en
dc.subject.lcsh Electrochemical analysis en
dc.title Substituent effects on the electrochemical, spectroscopic, and structural properties of Fischer mono- and biscarbene complexes of Chromium(0) en
dc.type Postprint Article en


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