Transition-Metal-Free Cleavage of CO
| Authors |
|
|---|---|
| Publication date | 04-10-2017 |
| Journal | Chemistry-A European Journal |
| Volume | Issue number | 23 | 55 |
| Pages (from-to) | 13628-13632 |
| Number of pages | 5 |
| Organisations |
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| Abstract |
Tertiary silane 1H,
2-[(diphenylsilyl)methyl]-6-methylpyridine, reacts with
tris(pentafluorophenyl)borane (BCF) to form the intramolecular
pyridine-stabilized silylium 1+-HBCF. The
corresponding 2-[(diphenylsilyl)methyl]pyridine, lacking the
methyl-group on the pyridine ring, forms classic N(py)→B adduct 2H-BCF featuring an intact silane Si−H fragment. Complex 1+-HBCF promotes cleavage of the C≡O triple bond in carbon monoxide with double C−Csp2 bond formation, leading to complex 3 featuring a B-(diarylmethyl)-B-aryl-boryloxysilane fragment. Reaction with pinacol generates bis(pentafluorophenyl)methane 4
as isolable product, proving the transition-metal-free deoxygenation of
carbon monoxide by this main-group system. Experimental data and DFT
calculations support the existence of an equilibrium between the
silylium–hydroborate ion pair and the silane–borane mixture that is
responsible for the observed reactivity.
|
| Document type | Article |
| Note | With supplementary file |
| Language | English |
| Related dataset | CCDC 1538414: Experimental Crystal Structure Determination CCDC 1538261: Experimental Crystal Structure Determination |
| Published at | https://doi.org/10.1002/chem.201703798 |
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