Formation of heterobinuclear Pt–Au complexes by chelate ring-opening of cis-[Pt(κ²-C₆R₄PPh₂)₂] (R = H, F)
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Authors
Mirzadeh, N.
Bennett, M. A.
Wächtler, E.
Zhechkov, L.
Heine, T.
Bhargava, S. K.
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Elsevier
Abstract
Mixed metal complexes of the type [Pt(k²
-2-C₆R₄PPh₂) (PPh₃) (m-2-C₆R₄PPh₂)AuCl] (R ¼ H, F) can be
prepared by treatment of cis-[Pt(k²
-C₆R₄PPh₂)₂] with [AuCl(PPh₃)]. Under similar reaction conditions, the
trans isomer of [Pt(k²
-C₆R₄PPh₂)₂] is unreactive. Computational studies have been performed to provide
insights into the reasons for this difference in reactivity. Density Functional Theory (DFT) calculations
show that formation of an AuCl adduct of [Pt(k²
-2-C₆R₄PPh₂)₂] is favoured over nucleophilic addition of
PPh3 to Pt as the initial step of the reaction, and reveal the required energy of the cis and trans isomers of
the bis-chelate [Pt(k²
-2-C₆R₄PPh₂)₂] in forming the mixed metal PteAu compounds. NBO analysis sheds
more light on the bonding orbitals of the cis and trans isomers, suggesting that the PteP bonds in the cis
isomer are more labile.
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Journal of Organometallic Chemistry