Engineering Crystals of Dendritic Molecules

A detailed single-crystal X-ray study of conformationally flexible sulfonimide-based dendritic molecules with systematically varied molecular architectures was undertaken. Thirteen crystal structures reported in this work include 9 structures of the secondgeneration dendritic sulfonimides decorated...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2009-07, Vol.106 (27), p.10922-10927
Hauptverfasser: Lukin, Oleg, Schubert, Dirk, Müller, Claudia M., Schweizer, W. Bernd, Gramlich, Volker, Schneider, Julian, Dolgonos, Grygoriy, Shivanyuk, Alexander, Rebek, Julius
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Sprache:eng
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Zusammenfassung:A detailed single-crystal X-ray study of conformationally flexible sulfonimide-based dendritic molecules with systematically varied molecular architectures was undertaken. Thirteen crystal structures reported in this work include 9 structures of the secondgeneration dendritic sulfonimides decorated with different aryl groups, 2 compounds bearing branches of both second and first generation, and 2 representatives of the first generation. Analysis of the packing patterns of 9 compounds bearing second-generation branches shows that despite their lack of strong directive functional groups there is a repeatedly reproduced intermolecular interaction mode consisting in an anchor-type packing of complementary second-generation branches of neighbouring molecules. The observed interaction tolerates a wide range of substituents in meta-and para-positions of the peripheral arylsulfonyl rings. Quantum chemical calculations of the molecule-molecule interaction energies agree at the qualitative level with the packing preferences found in the crystalline state. The calculations can therefore be used as a tool to rationalize and predict molecular structures with commensurate and non-commensurate branches for programming of different packing modes in crystal.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.0904264106