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Uranium(iv) alkyl cations: synthesis, structures, comparison with thorium(iv) analogues, and the influence of arene-coordination on thermal stability and ethylene polymerization activity.
Andreychuk, Nicholas R; Vidjayacoumar, Balamurugan; Price, Jeffrey S; Kervazo, Sophie; Peeples, Craig A; Emslie, David J H; Vallet, Valérie; Gomes, André S P; Réal, Florent; Schreckenbach, Georg; Ayers, Paul W; Vargas-Baca, Ignacio; Jenkins, Hilary A; Britten, James F.
Afiliação
  • Andreychuk NR; Department of Chemistry, McMaster University 1280 Main St. West Hamilton L8S 4M1 Ontario Canada emslied@mcmaster.ca.
  • Vidjayacoumar B; Department of Chemistry, McMaster University 1280 Main St. West Hamilton L8S 4M1 Ontario Canada emslied@mcmaster.ca.
  • Price JS; Department of Chemistry, McMaster University 1280 Main St. West Hamilton L8S 4M1 Ontario Canada emslied@mcmaster.ca.
  • Kervazo S; Université Lille, UMR 8523 - Physique des Lasers Atoms et Molecules F-59000 Lille France valerie.vallet@univ-lille.fr.
  • Peeples CA; Department of Chemistry, University of Manitoba Winnipeg R3T 2N2 Manitoba Canada schrecke@cc.umanitoba.ca.
  • Emslie DJH; Department of Chemistry, McMaster University 1280 Main St. West Hamilton L8S 4M1 Ontario Canada emslied@mcmaster.ca.
  • Vallet V; Université Lille, UMR 8523 - Physique des Lasers Atoms et Molecules F-59000 Lille France valerie.vallet@univ-lille.fr.
  • Gomes ASP; Université Lille, UMR 8523 - Physique des Lasers Atoms et Molecules F-59000 Lille France valerie.vallet@univ-lille.fr.
  • Réal F; Université Lille, UMR 8523 - Physique des Lasers Atoms et Molecules F-59000 Lille France valerie.vallet@univ-lille.fr.
  • Schreckenbach G; Department of Chemistry, University of Manitoba Winnipeg R3T 2N2 Manitoba Canada schrecke@cc.umanitoba.ca.
  • Ayers PW; Department of Chemistry, McMaster University 1280 Main St. West Hamilton L8S 4M1 Ontario Canada emslied@mcmaster.ca.
  • Vargas-Baca I; Department of Chemistry, McMaster University 1280 Main St. West Hamilton L8S 4M1 Ontario Canada emslied@mcmaster.ca.
  • Jenkins HA; Department of Chemistry, McMaster University 1280 Main St. West Hamilton L8S 4M1 Ontario Canada emslied@mcmaster.ca.
  • Britten JF; Department of Chemistry, McMaster University 1280 Main St. West Hamilton L8S 4M1 Ontario Canada emslied@mcmaster.ca.
Chem Sci ; 13(46): 13748-13763, 2022 Nov 30.
Article em En | MEDLINE | ID: mdl-36544741
ABSTRACT
Reaction of [(XA2)U(CH2SiMe3)2] (1; XA2 = 4,5-bis(2,6-diisopropylanilido)-2,7-di-tert-butyl-9,9-dimethylxanthene) with 1 equivalent of [Ph3C][B(C6F5)4] in arene solvents afforded the arene-coordinated uranium alkyl cations, [(XA2)U(CH2SiMe3)(η n -arene)][B(C6F5)4] {arene = benzene (2), toluene (3), bromobenzene (4) and fluorobenzene (5)}. Compounds 2, 3, and 5 were crystallographically characterized, and in all cases the arene is π-coordinated. Solution NMR studies of 2-5 suggest that the binding preferences of the [(XA2)U(CH2SiMe3)]+ cation follow the order toluenebenzene > bromobenzene > fluorobenzene. Compounds 2-4 generated in C6H5R (R = H, Me or Br, respectively) showed no polymerization activity under 1 atm of ethylene. By contrast, 5 and 5-Th (the thorium analogue of 5) in fluorobenzene at 20 and 70 °C achieved ethylene polymerization activities between 16 800 and 139 200 g mol-1 h-1 atm-1, highlighting the extent to which common arene solvents such as toluene can suppress ethylene polymerization activity in sterically open f-element complexes. However, activation of [(XA2)An(CH2SiMe3)2] {M = U (1) or Th (1-Th)} with [Ph3C][B(C6F5)4] in n-alkane solvents did not afford an active polymerization catalyst due to catalyst decomposition, illustrating the critical role of PhX (X = H, Me, Br or F) coordination for alkyl cation stabilization. Gas phase DFT calculations, including fragment interaction calculations with energy decomposition and ETS-NOCV analysis, were carried out on the cationic portion of 2'-Th, 2', 3' and 5' (analogues of 2-Th, 2, 3 and 5 with hydrogen atoms in place of ligand backbone methyl and tert-butyl groups), providing insight into the nature of actinide-arene bonding, which decreases in strength in the order 2'-Th > 2' ≈ 3' > 5'.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article