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  • Cyclopentadienyl ligands, substituted  (1)
  • Industrial Chemistry  (1)
  • 1
    ISSN: 0009-286X
    Keywords: Chemistry ; Industrial Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology , Process Engineering, Biotechnology, Nutrition Technology
    Notes: Zur elektrochemischen Synthese übergangsmetallorganischer Komplexverbindungen mit Cyclooctatetraen werden Mischungen löslicher Metall-Verbindungen mit dem Cycloolefin in organischen, meist aprotischen Lösungsmitteln bei Gegenwart eines Leitsalzes reduziert. Abhängig von der Art des mit der Reduktion gekoppelten Anodenprozesses erhält man auf elektrochemischem Weg eine Synthese aus dem kompakten Metall der Anode und dem Cycloolefin. Dies konnte bei den Cyclooctatetraen-Komplexen des Eisens und Nickels realisiert werden. In anderen Fällen kann man entweder in einer Diaphragmazelle oder mit leicht oxidierbaren Anoden, z. B. aus Aluminium, arbeiten. Diese Verfahrensweise empfiehlt sich bei der Synthese von Cyclooctatetraen-Komplexen des Titans, des Zirkoniums und auch des Nickels oder des Kobalts.
    Additional Material: 1 Ill.
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  • 2
    ISSN: 0009-2940
    Keywords: (η2-Alkene)(η5-cyclopentadienyl)organylnickel(II) complexes, stability and reactivity of ; Cyclopentadienyl ligands, substituted ; Chelating alkenylcyclopentadienyl ; Nickel complexes ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Various Coordinations in (η2-Alkene)(η5-cyclopentadienyl)organylnickel(II) ComplexesA series of (η2-alkene)(η5-cyclopentadienyl)organylnickel(II) complexes with substituted cyclopentadienyl ligands is synthesized in order to compare the structures, the thermal stabilities, and chemical reactivities. In (allyl)(η5-Cp')Ni compounds the allyl moiety is η3-coordinated when Cp'=C5H5, C5Me5 (1), C5Ph5 (2), indenyl (3), [Hydridotri(pyrazolyl)borato] (4) (as an equivalent of the cyclopentadienyl ligand), and [C5H4((CH2)3CH=CH2)] (22). It is found that the [(η2-alkene)alkyl(η5-Cp')nickel] compounds [Cp'=C5Me5; alkene=C2H4, alkyl=Me (10), Et (9) or alkene=(1 - 2-η2)-1,3-butadiene, alkyl=Me (11); Cp'=C5Ph5; alkene=C2H4, alkyl=Me (12)] are thermally more stable and less reactive than their η5;- C5H5 analogues; the largest increase in thermal stability is observed when the η5-Cp' and the η2-alkene functions are connected by substitution of the cyclopentadienyl ligand with an alkenyl group of suitable chain length. In the case of compounds of the general type [(η5-C5R4((CH2)nCH=CH2))-(ligand)Ni(II)] with Ph3P as the ligand these complexes are cationic [R=H, n=3 (14+) or R=Me, n=2 (17+)]. On the other hand, the compounds with anionic ligands are neutral complexes (R=H, n=3, ligand=methyl (19), ethyl (20), isopropyl (21) or R=Me, n=3 and ligand=iodide (24), bromide (25), methyl (26), ethyl (27)]. In 14+, 17+, 19 - 21 and 24 - 27 the C=C bond of the alkenyl group is η2-coordinated to the nickel atom. X-ray structures have been determined for 4 and 25.
    Additional Material: 2 Ill.
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