Preparation and characterisation of (SeNSNS)n(AsF6)2 containing the ‘electron-rich aromatic’ 6π SeNSNS2+(n= 1) and 7π SeNSNS˙+(n= 2)
Abstract
Attempted syntheses of SeNSAsF6 from the reactions of SNAsF6 with Se8(AsF6)2(4 : 1) or Se (1 : 1) gave ([graphic omitted])n(AsF6)2(n= 1 and 2), Se4(AsF6)2 and trace amounts of [graphic omitted]e(AsF6)2 and (Se/[graphic omitted]e)2(AsF6)2. The formation of ([graphic omitted])n(AsF6)2(n= 1 and 2) as the major product is consistent with generation of a SeNS+ intermediate which undergoes a concerted symmetry-allowed cycloaddition reaction with SN+ to give [graphic omitted]2+. The crystal structure of [graphic omitted](AsF6)2 consists of disordered [graphic omitted]2+ cations and AsF6– anions, that of ([graphic omitted])2(AsF6)2 consists of AsF6– anions and two independent disordered [graphic omitted]˙+ radical cations weakly linked into a non-centrosymmetric dimer by two long Se ⋯ S bonds [3.12(4), 3.09(2); 3.32(5), 3.16(6)Å]. The structure of (Se/[graphic omitted]e)2(AsF6)2 contains a 50:50 mixture of disordered [graphic omitted]e˙+ and [graphic omitted]˙+ radical cations joined by two long Se/S ⋯ Se bonds [3.077(3), 3.138(3)Å]. There are significant interionic interactions in all the salts. The 77Se [–60 °C, δ(Me2Se)= 2422.4, ν½, = 10.4 Hz] and 14N NMR [room temperature (r.t.), δ(MeNO2)= 68.9, ν½, = 446 Hz] spectra of [graphic omitted]2+ are consistent with a delocalised 6π ring structure. The [graphic omitted]2+ cation readily reacts with CCl3F to give Cl[graphic omitted]AsF6 the identity of which was confirmed by the determination of its crystal structure. The ESR spectrum of [graphic omitted]˙+ in SO2 solution at r.t. (g= 2.026, broad) and the spectrum of powdered [graphic omitted]˙+ in frozen SO2 at –160 °C were similar to but not identical with those of [graphic omitted]e˙+, [graphic omitted]e˙+ and [graphic omitted]˙+ indicative of a planar 7π system.
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