• Title of article

    Heterobimetallic Fe–Pd and Fe–Pt NCN pincer complexes (NCN = [C6H2(CH2NMe2)2-2,6]−)

  • Author/Authors

    Stefan K?cher، نويسنده , , Martin Lutz، نويسنده , , Anthony L. Spek، نويسنده , , Rajendra Prasad، نويسنده , , Gerard P.M. van Klink، نويسنده , , Gerard van Koten، نويسنده , , Heinrich Lang، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    9
  • From page
    4454
  • To page
    4462
  • Abstract
    The meta-diaminoaryl ferrocenes Fc–NCN–H (3) and Fc–Ctriple bond; length of mdashC–NCN–H (5) (Fc = (η5-C5H5)(η5-C5H4)Fe, NCN–H = C6H3(CH2NMe2)2-3,5) can be used as precursors in the preparation of heterobimetallic transition metal complexes of structural type Fc–NCN–MX (NCN = [C6H2(CH2NMe2)2-2,6]−; MX = PdCl (7), PtCl (8), PtI (9)) and Fc–Ctriple bond; length of mdashC–NCN–MX (MX = PdCl (11), PdI (12), PtCl (13)), respectively. They are accessible by applying different synthesis procedures, including oxidative addition and metallation–transmetallation processes. Cyclovoltammetric studies show that the ferrocene moieties in 3, 5, 7–9 and 11-13 can reversibly be oxidised. The potential of the Fe(II)/Fe(III) redox couple decreases with increasing electron density at the NCN pincer unit. The use of 8 as a possible (electro)chemical sensor in the detection of SO2 is discussed as well. The solid-state structures of 8 and 13 are reported. The crystals of 8 contain two molecules of 8 in the asymmetric unit. The plane of the C6H2 moiety is with 27.2(3)° and 38.2(3)° tilted towards the C5H4 entity, while in 13 an angle of 45.9(3)° can be found. The d8-electron configured platinum atoms possess a somewhat distorted square-planar surrounding, setup by two Me2NCH2ortho-substituents, the NCN Cipso carbon atom and the chloride ligand.
  • Keywords
    Platinum , Halide , Cyclicvoltammetry , X-ray crystal structure , NCN pincer , Ferrocene , Palladium , Sensor
  • Journal title
    INORGANICA CHIMICA ACTA
  • Serial Year
    2006
  • Journal title
    INORGANICA CHIMICA ACTA
  • Record number

    1324270