Cationic Copper Iminophosphorane Complexes as CuAAC Catalysts: A Mechanistic Study
| Authors | |
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| Publication date | 12-10-2020 |
| Journal | Organometallics |
| Volume | Issue number | 39 | 19 |
| Pages (from-to) | 3480-3489 |
| Number of pages | 10 |
| Organisations |
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| Abstract |
We have combined Cu K-edge X-ray absorption spectroscopy with NMR spectroscopy (1H and 31P) to study the Cu-catalyzed azide–alkyne cycloaddition (CuAAC) reaction under operando conditions. A variety of novel, well-defined CuI iminophosphorane complexes were prepared. These ligands, based on the in situ Staudinger reduction when [Cu(PPh3)3Br] is employed, were found to be active catalysts in the CuAAC reaction. Here, we highlight recent advances in mechanistic understanding of the CuAAC reaction using spectroscopic and kinetic investigations under strict air-free and operando conditions. A mononuclear Cu triazolide intermediate is identified to be the resting state during catalysis; cyclization and protonation both have an effect on the rate of the reaction. A key finding of this study includes a novel group of highly modular CuI complexes that are active in the base-free CuAAC reaction.
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| Document type | Article |
| Note | With supplementary files |
| Language | English |
| Related dataset | CCDC 1979086: Experimental Crystal Structure Determination CCDC 1979090: Experimental Crystal Structure Determination CCDC 1979089: Experimental Crystal Structure Determination CCDC 1979088: Experimental Crystal Structure Determination CCDC 1979085: Experimental Crystal Structure Determination CCDC 1979087: Experimental Crystal Structure Determination |
| Published at | https://doi.org/10.1021/acs.organomet.0c00348 |
| Downloads |
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