Issue 4, 2002

Reactions of P4 and I2 with Ag[Al(OC(CF3)3)4]: from elusive polyphosphorus cations to subvalent P3I6+ and phosphorus rich P5I2+

Abstract

Reactions of X2 (X = Br, I), P4 and Ag(CH2Cl2)[Al(OR)4] [R = C(CF3)3] in suitable ratios to prepare naked polyphosphorus cations were carried out and led to products which suggested the presence of these elusive cations as intermediates. At temperatures above −30 °C to rt the initially formed cations decomposed the Al(OR)4 anion giving, in two cases, the more stable fluoride bridged (RO)3Al–F–Al(OR)3 anion. When Br2 was used as the oxidising agent the proposed intermediate phosphorus cation (P5+?) reacted with the solvent CDCl3 by double insertion of a P+ unit into the C–Cl bond giving Cl2P(CDCl2)2[(RO)3Al–F–Al(OR)3], 1. When I2 was used as the oxidiser the reaction led to the marginally stable P3I6[(RO)3Al–F–Al(OR)3], 2 (X-ray). By using very mild conditions throughout (−80 °C) the primary product of the reaction of Ag(P4)2[Al(OR)4] and I2 was isolated: P5I2[Al(OR)4], 3, containing the P5I2+ cation with a hitherto unknown C2v-symmetric P5 cage as structural building block. P3I6[Al(OR)4], 4, was directly synthesised in quantitative yield starting from P2I4, PI3 and Ag(CH2Cl2)[Al(OR)4] in CH2Cl2 solution. P3I6+ is formed through the P2I5+ stage (31P-NMR). P3I6+ (av.: P2.33) is the first subvalent P–X cation (X = H, F, Cl, Br, I). P5I2+ (av.: P0.6) is the first phosphorus rich binary P–X cation. They are the third and fourth example of a binary P–X cation after the known PX4+ and P2X5+ cations. The observed reactions were fully accounted for by thermochemical Born–Haber cycles based on (RI-)MP2/TZVPP ab initio, COSMO solvation and lattice enthalpy calculations (all phases). The gaseous enthalpies of formation of several species were calculated to be (in kJ mol−1): P5+ (913), P3I6+ (694), P5I2+ (792), P2I5+ (733), Ag(P4)2+ (784).

Graphical abstract: Reactions of P4 and I2 with Ag[Al(OC(CF3)3)4]: from elusive polyphosphorus cations to subvalent P3I6+ and phosphorus rich P5I2+

Supplementary files

Article information

Article type
Paper
Submitted
03 May 2001
Accepted
05 Nov 2001
First published
29 Jan 2002

J. Chem. Soc., Dalton Trans., 2002, 500-512

Reactions of P4 and I2 with Ag[Al(OC(CF3)3)4]: from elusive polyphosphorus cations to subvalent P3I6+ and phosphorus rich P5I2+

I. Krossing, J. Chem. Soc., Dalton Trans., 2002, 500 DOI: 10.1039/B103957C

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