Phosphine–Imidate-Supported Nickel Catalysts for Ethylene/Acrylate Copolymerization

Phosphine–imidate-supported nickel catalysts were synthesized and tested for ethylene/acrylate copolymerization activity. Phosphine–amide metalation studies with (pyridine)2Ni­(CH2Si­(CH3)3)2 (py2Ni­(CH2TMS)2) suggest that the metalation proceeds via an intermediate phosphine–amide complex ([P,O–ami...

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Veröffentlicht in:Organometallics 2024-04, Vol.43 (8), p.859-865
Hauptverfasser: Rivet, John R., Henderson, Briana S., Marshall, Steve, Cade, Keosha, Wilson, David R., Spinney, Heather A., Hou, Jianbo, Nett, Alex J.
Format: Artikel
Sprache:eng
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Zusammenfassung:Phosphine–imidate-supported nickel catalysts were synthesized and tested for ethylene/acrylate copolymerization activity. Phosphine–amide metalation studies with (pyridine)2Ni­(CH2Si­(CH3)3)2 (py2Ni­(CH2TMS)2) suggest that the metalation proceeds via an intermediate phosphine–amide complex ([P,O–amide]­Ni­(CH2TMS)2). Subsequent deprotonation of the amide N–H gives access to the phosphine–imidate-supported nickel complex ([P,O–imidate]­pyNi­(CH2TMS)). The imidate form of the ligand proved to be critical for polymerization activity. The phosphine–imidate nickel catalysts described herein were capable of producing ethylene/acrylate copolymers with molecular weights (M w) from 700 to 120,000 g/mol and with acrylate incorporation >2.6 mol % in some cases. It was determined that hemilabile alkoxy groups on the phosphine aryl groups were necessary to achieve high M w and acrylate incorporation. These results demonstrate that phosphine–amides, a well-studied ligand class, can be utilized in the imidate form to access highly active neutral nickel polymerization catalysts.
ISSN:0276-7333
1520-6041
DOI:10.1021/acs.organomet.4c00034