Molecular orbital and IMOMM studies of the chain transfer mechanisms of the diimine-M(II)-catalyzed (M = Ni, Pd) ethylene polymerization reaction

被引:100
作者
Musaev, DG [1 ]
Froese, RDJ
Morokuma, K
机构
[1] Emory Univ, Cherry L Emerson Ctr Sci Computat, Atlanta, GA 30322 USA
[2] Emory Univ, Dept Chem, Atlanta, GA 30322 USA
关键词
D O I
10.1021/om9711032
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Associative displacement and H-exchange chain transfer/termination mechanisms for the diimine-M(II)-catalyzed (M = Ni, Pd) ethylene polymerization have been studied using B3LYP and IMOMM methods. For unsubstituted diimine complexes the coordination of ethylene to the metal-olefin-hydride complexes L2M(C2H4)H+ and L2M(C3H6)H+ is exothermic and gives the five-coordinate complex 22. From 22, the following processes can take place: (a) the associative displacement, path E, corresponding to dissociation of propylene, (b) the dissociation of ethylene, reverse path D, (c) the H-exchange, path F, and (d) the reattaching of the hydrogen to the polymer chain, path G. For M = Ni, the associative displacement cannot compete with paths F and G and is unlikely to take place. For M = Pd, the energetics for the paths E-G are similar, and the chain transfer/termination via the associative dissociation path E is more likely. The H-exchange process, path F, is the most favorable chain transfer/termination mechanism for both metals and includes (a) oxidative addition of the beta-agostic C beta-H-agostic bond to the metal center to form the metalolefin-hydride complex 21, (b) the coordination of ethylene to the metal center to form the five-coordinate complex 22, and (c) migration of the hydrogen atom from the metal to the ethylene molecule. The rate-determining steps are steps a and c for the diimine-Ni- and diimine-Pd-catalyzed reactions, respectively. The substitution of the imine hydrogens with bulky aromatic groups 2,6-C6H3(i-Pr)(2) makes 22 thermodynamically unstable relative to C2H4 + diimine-M(C3H7)(+). Therefore, all processes starting from 22 become unimportant. These results were compared with the previously studied beta-hydrogen transfer and hydrogenolysis chain transfer mechanisms.
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页码:1850 / 1860
页数:11
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