Synthesis of a Highly Enantiomerically Enriched Silagermane and Selective Cleavage of the Si−Ge Bond with Lithium
(R)-PhMe(CH2NC5H10)SiGeMe3, the first enantiomerically pure silagermane with stereoinformation at the silicon, was synthesized via a lithiosilane with retention of configuration. Further reaction with lithium resulted in unanticipated silicon−germanium bond cleavage to form PhMe(CH2NC5H10)SiLi, alth...
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Veröffentlicht in: | Organometallics 2008-06, Vol.27 (11), p.2499-2504 |
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Hauptverfasser: | , |
Format: | Artikel |
Sprache: | eng |
Online-Zugang: | Volltext |
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Zusammenfassung: | (R)-PhMe(CH2NC5H10)SiGeMe3, the first enantiomerically pure silagermane with stereoinformation at the silicon, was synthesized via a lithiosilane with retention of configuration. Further reaction with lithium resulted in unanticipated silicon−germanium bond cleavage to form PhMe(CH2NC5H10)SiLi, although the disilane (R)-PhMe(CH2NC5H10)SiSiMe3 undergoes silicon−phenyl bond cleavage. A trapping reaction with pentamethylchlorodisilane occurred with retention of configuration. DFT calculations on the model systems PhH2SiSiH3 and PhH2SiGeH3 indicate a stepwise, dissociative electron transfer mechanism for the silicon−element bond cleavage. |
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ISSN: | 0276-7333 1520-6041 |
DOI: | 10.1021/om700848z |