Artigo Revisado por pares

Study of Unusually High Rotational Barriers about SN Bonds in Nonafluorobutane‐1‐sulfonamides: The Electronic Nature of the Torsional Effect

2002; Wiley; Volume: 85; Issue: 12 Linguagem: Inglês

10.1002/hlca.200290006

ISSN

1522-2675

Autores

Ilya M. Lyapkalo, Hans‐Ulrich Reißig, Andreas Schäfer, Armin Wagner,

Tópico(s)

Chemical Reactions and Mechanisms

Resumo

Abstract Slow rotation about the SN bond in N , N ‐disubstituted nonafluorobutane‐1‐sulfonamides 1 can easily be detected by NMR measurements at room temperature. This effect causes magnetic nonequivalence of otherwise identical geminal substituents in symmetrical staggered ground‐state conformation A . The torsional barriers determined (62–71 kJ⋅mol −1 ) proved to be the highest ever observed for sulfonamide moieties. They are comparable to the values routinely measured for carboxylic acid amides or carbamates. The restricted rotation is interpreted as result (n N d S )‐ π and of n N  σ interactions, which develop substantial S,N double‐bond character in sulfonamides 1 . The S,N binding interaction is increased by the highly electron‐withdrawing effect of the perfluorobutyl group. The anticipated symmetry of the ground‐state conformation A and the considerable shortening of the SN bond (1.59 Å) compared to the mean value in sulfonamides (1.63 Å) are confirmed by single‐crystal X‐ray study of N , N ‐dibenzylnonafluorobutane‐1‐sulfonamide ( 1c ).

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