4.7 Article

sp-sp3 Coupling reactions of alkynylsilver cations, RC≡CAg2+ (R = Me and Ph) with allyliodide

Journal

DALTON TRANSACTIONS
Volume 42, Issue 26, Pages 9462-9467

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c2dt32143b

Keywords

-

Funding

  1. ARC [DP110103844, DP1096134]
  2. University of Queensland

Ask authors/readers for more resources

Alkynylsilver cations, RC equivalent to CAg2+ (where R = Me and Ph) have been prepared in the gas phase using multistage mass spectrometry experiments in a quadrupole ion trap mass spectrometer. Two methods were used: (i) electrospray ionisation (ESI) of a mixture of AgNO3 (in MeOH/H2O/acetic acid) and the alkyne carboxylic acid to yield the appropriate silver acetylide cations RC equivalent to CAg2+, via a facile decarboxylation of the RC equivalent to CCO2Ag2+ precursor; (ii) ESI of silver acetylides, RCuCAg, which yields a cluster of the type, [(RC equivalent to CAg) 12Ag2Cl](+). Regardless of the method of preparation, these alkynylsilver cations, RCuCAg2+, undergo ion-molecule reactions with allyliodide to yield the ionic products Ag(2)l(+) and [(RC equivalent to CCH2CH=CH2)Ag](+). The CID spectrum of [(PhC equivalent to CCH2CH=CH2)Ag](+) was compared to that of an authentic sample of the silver adduct of 5-phenyl-1-penten-4-yne. Both ions fragment to yield Ag+ and the radical cation, PhC equivalent to CCH2CH=CH2+., confirming that C-C bond coupling has taken place in the gas phase. DFT calculations were carried out on these C-C bond coupling reactions for the system R = Me. The reaction is highly exothermic and involves the initial coordination of the allyliodide to both silver atoms, with the iodine coordinating to one atom and the alkene moiety coordinating to the other. The overall mechanism of C-C bond coupling involves oxidative addition of the allyliodide followed by reductive elimination of RC equivalent to CCH2CH=CH2, to ultimately yield two sets of reaction products: (i) Ag(2)l(+) and RC equivalent to CCH2CH=CH2; and (ii) [(RC equivalent to CCH2CH=CH2)Ag](+) and Agl.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.7
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available