Selective Carbanion-Pyridine Coordination of a Reactive P,N Ligand to Rh-I
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| Publication date | 12-03-2019 |
| Journal | Chemistry-A European Journal |
| Volume | Issue number | 25 | 15 |
| Pages (from-to) | 3875-3883 |
| Number of pages | 9 |
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| Abstract |
Ligands with reactive carbon sites in the periphery of a metal center have emerged as a powerful approach for metal–ligand bond activation. These reactive carbon sites are commonly generated by deprotonation strategies. Carbon–silicon bond cleavage is a potential alternative to access such constructs. Herein, the monodesilylation of bis‐silyl‐substituted P,N scaffold PNSi2 in the coordination sphere of [RhI(Cl)(CO)(PNSi2)] (1) with sodium azide is disclosed. This affords a unique dinucleating anionic κ2‐C,N‐κ1‐P ligand with a carbanionic methine carbon atom directly bound to rhodium as part of a four‐membered Rh‐N‐C‐C rhodacycle. This dimer undergoes meta‐pyridine C−H activation facilitated by weak bases, which leads to a desymmetrization of the system and provides a σ,π‐bridging 3‐pyridyl fragment bound to RhI. The facile Si−C cleavage strategy may pave the way to studying the reactivity and functionalization of a variety of κ2‐C,N‐coordinated pyridine scaffolds for selective transformations.
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| Document type | Article |
| Note | With supplementary file |
| Language | English |
| Related dataset | CCDC 1589141: Experimental Crystal Structure Determination CCDC 1590067: Experimental Crystal Structure Determination CCDC 1590066: Experimental Crystal Structure Determination |
| Published at | https://doi.org/10.1002/chem.201805504 |
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