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Isolation of a Lewis acid-base stabilized stannanone
Mike Jörges1, Daniel Knyszek1, Manoj Kumar1
1Faculty of Chemistry and Biochemistry, Ruhr-University Bochum, Universitätsstrasse 150 44801 Bochum Germany viktoria.gessner@rub.de.
Abstract:
A diylide-substituted stannanone, stabilized by the Lewis acid SnCl2 (formally written as Y2Sn[double bond, length as m-dash]O → SnCl2) has been successfully isolated and characterized by spectroscopic, crystallographic and computational methods. The nature of the ylide substituent proved critical for its successful isolation. While oxidation of a stannylene with a cyano-substituted ylide yielded only a dimeric stannoxane, incorporation of a thiophosphinoyl moiety provided sufficient steric bulk and additional stabilization through P[double bond, length as m-dash]S coordination, enabling the isolation of the monomeric stannanone. Computational studies revealed a strongly polarized Sn-O bond with negligible π-contribution to the bonding interaction and high opposing charges, resulting in a short Sn-O linkage but a high reactivity toward bond cleavage. This study highlights the challenge associated with stabilizing formal multiple bonds with the heavier atoms and underscores the importance of substituent design in achieving such stabilization.
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