Zirconocene Aluminohydride‐Methylaluminoxane Clathrates for Ethylene Polymerization in Slurry

The main aim of this work is to obtain heterogeneous, zirconocene aluminohydride/methylaluminoxane (MAO) polymerization catalysts, without using inorganic carriers like silica. The syntheses of zirconocenium ion‐based clathrates, formed from aluminohydride zirconocene complexes activated with MAO, a...

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Published in:Macromolecular symposia. Vol. 374; no. 1
Main Authors: Padilla‐Gutiérrez, Benjamín, Ventura‐Hunter, Carolina, García‐Zamora, Maricela, Collins, Scott, Estrada‐Ramírez, Alba N., Pérez‐Camacho, Odilia
Format: Journal Article
Language:English
Published: Weinheim Wiley Subscription Services, Inc 01-08-2017
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Abstract The main aim of this work is to obtain heterogeneous, zirconocene aluminohydride/methylaluminoxane (MAO) polymerization catalysts, without using inorganic carriers like silica. The syntheses of zirconocenium ion‐based clathrates, formed from aluminohydride zirconocene complexes activated with MAO, are reported here. Several different approaches were examined for the synthesis of these clathrate compositions; in one approach the catalyst (nBuCp2ZrH3AlH2/MAO) was first prepared in toluene solution, and the clathrate phase then generated by addition of silicone oil. An alternate approach involved reaction of silicone oil or another clathrate‐forming additive (e.g. KCl) with MAO to form a solidified clathrate, and then introducing the zirconocene aluminohydride complex (nBuCp2ZrH3AlH2). The clathrate catalysts were probed in the polymerization of ethylene in hydrocarbon slurry, without using additional co‐catalyst (MAO), or at very low concentrations of modified MAO (MMAO 7, 13 wt‐% in iso‐octane). The catalytic activities of the solid clathrate catalysts were compared as well as the morphology and properties of the polyethylene synthesized in slurry.
AbstractList The main aim of this work is to obtain heterogeneous, zirconocene aluminohydride/methylaluminoxane (MAO) polymerization catalysts, without using inorganic carriers like silica. The syntheses of zirconocenium ion-based clathrates, formed from aluminohydride zirconocene complexes activated with MAO, are reported here. Several different approaches were examined for the synthesis of these clathrate compositions; in one approach the catalyst (nBuCp2ZrH3AlH2/MAO) was first prepared in toluene solution, and the clathrate phase then generated by addition of silicone oil. An alternate approach involved reaction of silicone oil or another clathrate-forming additive (e.g. KCl) with MAO to form a solidified clathrate, and then introducing the zirconocene aluminohydride complex (nBuCp2ZrH3AlH2). The clathrate catalysts were probed in the polymerization of ethylene in hydrocarbon slurry, without using additional co-catalyst (MAO), or at very low concentrations of modified MAO (MMAO 7, 13 wt-% in iso-octane). The catalytic activities of the solid clathrate catalysts were compared as well as the morphology and properties of the polyethylene synthesized in slurry.
Author Pérez‐Camacho, Odilia
Padilla‐Gutiérrez, Benjamín
Collins, Scott
García‐Zamora, Maricela
Ventura‐Hunter, Carolina
Estrada‐Ramírez, Alba N.
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CitedBy_id crossref_primary_10_3390_molecules29020502
crossref_primary_10_1007_s11144_023_02540_7
crossref_primary_10_1002_cctc_202300465
crossref_primary_10_1016_j_mcat_2021_111768
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10.1016/j.molcata.2009.03.018
10.1021/om970141i
10.1021/om0604730
10.1002/app.23120
10.1016/S0022-328X(00)80281-8
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Snippet The main aim of this work is to obtain heterogeneous, zirconocene aluminohydride/methylaluminoxane (MAO) polymerization catalysts, without using inorganic...
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SubjectTerms Addition polymerization
Amine oxidase (flavin-containing)
catalyst
Catalysts
Chemical synthesis
Clathrates
Ethylene
Low concentrations
Polyethylene
Polyethylenes
Polymerization
Potassium chloride
Silica
Silicon dioxide
Silicones
Slurries
slurry polymerization
Toluene
zirconocenes
Title Zirconocene Aluminohydride‐Methylaluminoxane Clathrates for Ethylene Polymerization in Slurry
URI https://onlinelibrary.wiley.com/doi/abs/10.1002%2Fmasy.201600139
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Volume 374
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