Title of article
The effectiveness of rhodium(I), (II) and (III) complexes as catalysts in hydrosilylation of model olefin and polyether with triethoxysilane and poly(dimethylsiloxane-co-methylsiloxane) Original Research Article
Author/Authors
Tomasz Ganicz، نويسنده , , Urszula Mizerska، نويسنده , , Monika Moszner، نويسنده , , Michael O’Brien، نويسنده , , Robert Perry، نويسنده , , Wlodzimierz A. Stanczyk، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2004
Pages
7
From page
49
To page
55
Abstract
The catalytic activity and selectivity of a series of rhodium(I), (II) and (III) complexes have been examined in a model hydrosilylation reaction of 1-octene with triethoxysilane and in a more applied system composed of oligomeric allyl ethoxylate alcohol and poly(dimethylsiloxane-co-methylsiloxane). The results were compared with the catalytic activity of the widely used Karstedt’s system (Pt2[(ViSiMe2)2O]3 (1)). The tris(3-phenyl,5-methylpyrazol-1-yl)borate (TpPh,Me) dicarbonyl rhodium(I) compound TpPh,MeRh(CO)2 (2) was found to be more active in both reactions than (1), but in case of hydrosilylation of the polymeric species, (2) was less selective leading to a higher amount of the undesired Markovnikov addition. The catalytic activity of the other rhodium complexes Rh(Hdmg)2(PPh)3Cl (3), [Rh(Hdmg)2(PPh3)]2 (4), [Rh(Hdmg)2(PPh3)2]ClO4 (5), TpPh,MeRh(CO)(PPh3) (6), Rh(CH3COO)(PPh3)3 (7), [Rh(Hdmg)2(ClZndmg)(PPh3)]2 (8) (Hdmg = diemthylglyoximate) was similar to or somewhat lower than 1. No clear relationship was found between the formal oxidation state of rhodium and the catalytic activity of its complex, which is in contrary to theoretical suggestions.
Keywords
polyether , alkene , Homogeneous catalysis , Hydrosilylation , Rhodium , alkene , Triethoxysilane
Journal title
Applied Catalysis A:General
Serial Year
2004
Journal title
Applied Catalysis A:General
Record number
1151254
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