Cross-polarization, combined with magic-angle spinning, has been employed to obtain high-resolution solid-state 13C and 31P NMR spectra of a series of solid, peculiar ketenes, also known as eta1-ketenyl derivatives, bearing as substituents a PPh3 moiety and a coordinatively unsaturated Pt(II) fragment. Solid–state NMR data found for trans-[PtCl2(eta2-C2H4){eta1-C(PPh3)CO}], trans-[PtCl2{eta1-C(PPh3)CO}2], Ph3PC=C=O, trans-[PtCl2(eta2-C2H4){eta1-CH(PPh3)COMe}], trans-[PtCl2{eta1-CH(PPh3)COMe}2] and Ph3PCHCOMe, are compared with NMR values obtained in solution. The general utility of the CP/MAS NMR technique in the study of unstable or insoluble complexes is discusses

Metal substituted ketenes: first 13C and 31P CP/MAS NMR determinations

PANDOLFO, LUCIANO;
2001

Abstract

Cross-polarization, combined with magic-angle spinning, has been employed to obtain high-resolution solid-state 13C and 31P NMR spectra of a series of solid, peculiar ketenes, also known as eta1-ketenyl derivatives, bearing as substituents a PPh3 moiety and a coordinatively unsaturated Pt(II) fragment. Solid–state NMR data found for trans-[PtCl2(eta2-C2H4){eta1-C(PPh3)CO}], trans-[PtCl2{eta1-C(PPh3)CO}2], Ph3PC=C=O, trans-[PtCl2(eta2-C2H4){eta1-CH(PPh3)COMe}], trans-[PtCl2{eta1-CH(PPh3)COMe}2] and Ph3PCHCOMe, are compared with NMR values obtained in solution. The general utility of the CP/MAS NMR technique in the study of unstable or insoluble complexes is discusses
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/2460709
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