Novel S–N ring contractions using the 4-phenyl-1,2,3,5-dithiadiazole dimer, the synthesis and X-ray crystal structures of [(PhCN2S2)2Cl][S3N3], [PhCN2S2][S3N3], and [PhCN2S2][S3N2]Cl, and an ab initio molecular-orbital study of the bonding in [PhCN2S2][S3N3]

Abstract
When the 4-phenyl-1,2,3,5-dithiadiazole dimer (1) dehalogenates [S5N5]Cl a novel ring contraction occurs producing [(PhCN2S2)2Cl][S3N3], (2), in acetonitrile, and a mixture of (2) and [PhCN2S2][S3N3], (3), in pentane. The salt [S4N3]Cl is also dehalogenated by (1) in acetonitrile giving [PhCN2S2][S3N2]Cl, (4). The X-ray crystal structures of (2)–(4) provide an insight into the electronic state of the CN2S2 rings in these three compounds by comparison of the S–S bond length with the known lengths in compound (1), [PhCN2S2][AsF6], and [PhCN2S2]Cl. Extended-Hückel and ab initio molecular-orbital calculations were carried out on compound (3) and high-yield preparations of (2)–(4) are also described. The reactions of [S5N5]Cl or [S5N3]Cl with (1), in acetonitrile, produced in both cases the new e.s.r.-active compound [PhCN2S2]2Cl, whose solid-state preparation is described. The reaction between the vapours of (SN)x and (1) produced (3) providing further evidence for S3N3˙ being the major vapour-phase species above (SN)xin vacuo at ca. 160 °C.

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