Abstract

In contrast to the corresponding ethers, which give 3-aryl-2,3-dihydro-1,3,2-benzoxazaphosph(V)oles [amino(oxy)phosphoranes](1; X = O) on reaction with phosphorus(III) esters, aryl 2-nitroaryl sulphides give N-aryl-N(2-alkylthiophenyl)phosphoramidates (4). In addition to N–S heterocycles. Yields of (4) are high (70%) when O-blocking methyl groups are present. Using 31P Fourier-transform n.m.r. spectroscopy we have shown that compounds (4) are probably derived via the intermediacy and isomerisation of amino (thiyl)phosphoranes (1; X = S). This has been confirmed, using 2-phenyl-1,3,2-dioxaphospholan, by the isolation of the novel 2,3-dihydro-2-phenyl-3-(2,4,6-trimethylphenyl)-1,3,2-benzothiazaphosph(V)ole-2-spiro-2′-1′,3′,2′-dioxaphospholan (6; Q = Y = Me) and its 2,6-dimethylphenyl- and 2,6-dimethoxyphenyl-analogues (6; Q = Me, Y = H and 6; Q = MeO, Y = H) in 32–76% yield. These do not isomerise to amidates corresponding to (4). The use of methyl diphenylphosphinite (Ph2POMe) in boiling toluene led to the first monocyclic amino (thiyl)phosphoranes, 2,3-dihydro-2,2-diphenyl-3-(2,6-dimethylphenyl)-2-methoxy-1,3,2-benzothiazaphosph(V)ole (7 Ar = 2,6-Me3C6H3; 51%) and its 2,4.6-trimethylphenyl analogue (7; Ar = 2,4,6-Me2C6H2; 48%). In boiling cumene (153 °C) these isomerised into N-(2,6-dimethylphenyl)-N-(2-methylthiophenyl)-PP-diphenylphosphinamidate (8) and its trimethylphenyl analogue. A kinetic study, using a programmed n.m.r. technique, showed that this reaction is first order (105k1 at 451 K = 2.4 ± 1.2 s–1), the high activation energy (Eact. 220 ± 60 kJ mol–1) pointing to a rate-determining fission of the phosphorane ring to give a quasi-phosphonium betaine (10), followed by fast alkyl transfer.

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