Literature DB >> 15099111

A comparison of C-F and C-H bond activation by zerovalent ni and pt: a density functional study.

Meike Reinhold1, John E McGrady, Robin N Perutz.   

Abstract

Density functional theory indicates that oxidative addition of the C-F and C-H bonds in C6F6 and C6H6 at zerovalent nickel and platinum fragments, M(H2PCH2CH2PH2), proceeds via initial exothermic formation of an eta2-coordinated arene complex. Two distinct transition states have been located on the potential energy surface between the eta2-coordinated arene and the oxidative addition product. The first, at relatively low energy, features an eta3-coordinated arene and connects two identical eta2-arene minima, while the second leads to cleavage of the C-X bond. The absence of intermediate C-F or C-H sigma complexes observed in other systems is traced to the ability of the 14-electron metal fragment to accommodate the eta3-coordination mode in the first transition state. Oxidative addition of the C-F bond is exothermic at both nickel and platinum, but the barrier is significantly higher for the heavier element as a result of strong 5dpi-ppi repulsions in the transition state. Similar repulsive interactions lead to a relatively long Pt-F bond with a lower stretching frequency in the oxidative addition product. Activation of the C-H bond is, in contrast, exothermic only for the platinum complex. We conclude that the nickel system is better suited to selective C-F bond activation than its platinum analogue for two reasons: the strong thermodynamic preference for C-F over C-H bond activation and the relatively low kinetic barrier.

Entities:  

Year:  2004        PMID: 15099111     DOI: 10.1021/ja0396908

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  6 in total

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2.  Nickel-Catalyzed Cycloisomerization of Enynes: Catalyst Generation via C-H Activation of Carbene Ligands.

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4.  The mechanism of directed Ni(ii)-catalyzed C-H iodination with molecular iodine.

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Journal:  Chem Sci       Date:  2017-11-28       Impact factor: 9.825

5.  Coligand role in the NHC nickel catalyzed C-F bond activation: investigations on the insertion of bis(NHC) nickel into the C-F bond of hexafluorobenzene.

Authors:  Maximilian W Kuntze-Fechner; Hendrik Verplancke; Lukas Tendera; Martin Diefenbach; Ivo Krummenacher; Holger Braunschweig; Todd B Marder; Max C Holthausen; Udo Radius
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6.  Mild sp2Carbon-Oxygen Bond Activation by an Isolable Ruthenium(II) Bis(dinitrogen) Complex: Experiment and Theory.

Authors:  Samantha Lau; Bryan Ward; Xueer Zhou; Andrew J P White; Ian J Casely; Stuart A Macgregor; Mark R Crimmin
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  6 in total

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