1999
DOI: 10.1021/om9904495
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Half-Sandwich Group 4 Metal Siloxy and Silsesquioxane Complexes:  Soluble Model Systems for Silica-Grafted Olefin Polymerization Catalysts

Abstract: The cuboctameric hydroxysilsesquioxane (c-C5H9)7Si8O12(OH) (2), obtained after hydrolysis of (c-C5H9)7Si8O12Cl (1), and triphenylsilanol have been applied as model supports for silica-grafted olefin polymerization catalysts. The ligands were introduced on group 4 metals by either chloride metathesis or protonolysis. Treatment of Cp‘ ‘MCl3 (M = Ti, Zr; Cp‘ ‘ = 1,3-C5H3(SiMe3)2) with silsesquioxane and siloxylithium or -thallium salts, [(c-C5H9)7Si8O13]M‘ (M‘ = Tl (3), Li (4), Li·TMEDA (5)) or Ph3SiOTl gave eith… Show more

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Cited by 127 publications
(76 citation statements)
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“…A previous study has used triphenylsilanol [27], but polyhedral oligomeric silsesquioxanes (POSS) are considered better models since they display pK a values closer to that of silica [53]. Of the various POSSÕs, (c-C 5 H 9 ) 7 Si 7 O 12 SiOH is considered as a good model for [37,38,54].…”
Section: Development Of An Equivalent Homogeneous Olefin Metathesis Cmentioning
confidence: 99%
“…A previous study has used triphenylsilanol [27], but polyhedral oligomeric silsesquioxanes (POSS) are considered better models since they display pK a values closer to that of silica [53]. Of the various POSSÕs, (c-C 5 H 9 ) 7 Si 7 O 12 SiOH is considered as a good model for [37,38,54].…”
Section: Development Of An Equivalent Homogeneous Olefin Metathesis Cmentioning
confidence: 99%
“…Metal derivatives of the cage silsesquioxanes, R 7 Si 7 O 12 H 3 (see Scheme 1) have been during the last decade an object of intensive structure and reactivity studies [1][2][3]. They provide, on one hand, as reliable models, a direct insight into the coordination of metal centers with a silica support for the modeling of catalyst structures [4][5][6], where, in particular, the structure of highly attractive zirconia-silica epoxidation catalysts remain insufficiently investigated [4].…”
mentioning
confidence: 99%
“…B(C 6 F 5 ) 3 or MAO were used as co-catalyst in these systems. [14] A noteworthy feature of polyethylene obtained with catalysts 1-6 is the invariably low molecular weight of the polymer (M w = 600-3000) [carbon range~C 40 -C 100 ] of the polymer as revealed by GPC analysis. In all cases, the PEs display narrow molecular weight distribution (M w /M n = 1.5-2.1).…”
Section: Catalytic Ethylene Polymerizationmentioning
confidence: 99%