Dynamic Conformational Behavior in Stable Pentaorganosilicates

Open Access
Authors
  • L.J.P. van der Boon
  • J.H. Hendriks
  • D. Roolvink
  • S.J. O'Kennedy
Publication date 31-07-2019
Journal European Journal of Inorganic Chemistry
Volume | Issue number 2019 | 28
Pages (from-to) 3318-3328
Number of pages 11
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
  • Faculty of Science (FNWI) - Institute of Interdisciplinary Studies (ISS)
  • Faculty of Science (FNWI)
Abstract
Silicates with five organic groups are conformationally dynamic even with two bidentate ligands. Symmetry breaking by incorporating a single nitrogen or phosphorus atom provides insight into their dynamic behavior. N‐containing silicates with bidentate 2‐phenylpyridine, biphenyl, and a Me (8), Et (9) or Ph (10) ligand were studied comprehensively by NMR spectroscopy and DFT theory to reveal two isoenergetic conformers with a barrier of ca. 10 kcal mol–1. P‐containing silicate 14 with bidentate triphenylphosphane, biphenyl, and Me ligands is subject to multiple Berry pseudorotations, turnstile rotations, and conformational flexibility of the P‐center. The stability increased by masking the P‐center with a BH3 group (16). DFT and NMR modeling reveal two isoenergetic conformers for 16 with a barrier of ca. 19 kcal‧mol–1 for a complex interconversion pathway. This barrier bodes well for the design of configurationally stable chiral‐at‐metal transition metal catalysts.
Document type Article
Note With supplementary file
Language English
Related dataset CCDC 1901694: Experimental Crystal Structure Determination CCDC 1901693: Experimental Crystal Structure Determination CCDC 1901695: Experimental Crystal Structure Determination
Published at https://doi.org/10.1002/ejic.201900641
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ejic.201900641 (Final published version)
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