Issue 14, 2010

Novel access to azaphosphiridine complexes and first applications using Brønsted acid-induced ring expansion reactions

Abstract

Synthesis of azaphosphiridine complexes 3a-e was achieved via thermal group transfer reaction using 2H-azaphosphirene complex 1 and N-methyl C-aryl imines 2a-e (i) or via reaction of transient Li/Cl phosphinidenoid complex 5 (prepared from dichloro(organo)phosphane complex 4) using 2a-c (ii), respectively. Reaction of complexes 3a,d and trifluoromethane sulfonic acid in the presence of dimethyl cyanamide led to a highly bond- and regioselective ring expansion yielding 1,3,4σ3λ3-diazaphosphol-2-ene complexes 8a,d after deprotonation with NEt3. 31P NMR reaction monitoring revealed that protonation of complex 3a yields the azaphosphiridinium complex 6a, unambiguously identified by NMR spectroscopy at low temperature. All isolated products were characterized by multinuclear NMR spectroscopy, IR and UV/Vis (for 3a,d, 6a, 8a,d), MS and single-crystal X-ray crystallography in the cases of complexes 3b-d, 8a and 8d. DFT studies on the reaction mechanism and compliance constants of the model complex of 6a are presented.

Graphical abstract: Novel access to azaphosphiridine complexes and first applications using Brønsted acid-induced ring expansion reactions

Supplementary files

Article information

Article type
Paper
Submitted
22 Oct 2009
Accepted
22 Dec 2009
First published
23 Feb 2010

Dalton Trans., 2010,39, 3472-3481

Novel access to azaphosphiridine complexes and first applications using Brønsted acid-induced ring expansion reactions

S. Fankel, H. Helten, G. von Frantzius, G. Schnakenburg, J. Daniels, V. Chu, C. Müller and R. Streubel, Dalton Trans., 2010, 39, 3472 DOI: 10.1039/B922166B

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