Reversible Hydride Migration from C 5 Me 5 to Rh I Revealed by a Cooperative Bimetallic Approach

The use of cyclopentadienyl ligands in organometallic chemistry and catalysis is ubiquitous, mostly due to their robust spectator role. Nonetheless, increasing examples of non-innocent behaviour are being documented. Here, we provide evidence for reversible intramolecular C-H activation at one methy...

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Veröffentlicht in:Angewandte Chemie International Edition 2020-11, Vol.59 (47), p.20863-20867
Hauptverfasser: Alférez, Macarena G, Moreno, Juan J, Hidalgo, Nereida, Campos, Jesús
Format: Artikel
Sprache:eng
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Zusammenfassung:The use of cyclopentadienyl ligands in organometallic chemistry and catalysis is ubiquitous, mostly due to their robust spectator role. Nonetheless, increasing examples of non-innocent behaviour are being documented. Here, we provide evidence for reversible intramolecular C-H activation at one methyl terminus of C Me in [(η-C Me )Rh(PMe ) ] to form a new Rh-H bond, a process so far restricted to early transition metals. Experimental evidence was acquired from bimetallic rhodium/gold structures in which the gold center binds either to the rhodium atom or to the activated Cp* ring. Reversibility of the C-H activation event regenerates the Rh and Au monometallic precursors, whose cooperative reactivity towards polar E-H bonds (E=O, N), including the N-H bonds in ammonia, can be understood in terms of bimetallic frustration.
ISSN:1433-7851
1521-3773
DOI:10.1002/anie.202008442