Elementary mechanisms of metallocene activation by methylaluminoxane cocatalysts for olefin polymerization
Author:
Publisher
Wiley
Subject
Polymers and Plastics,Materials Chemistry,Organic Chemistry
Reference16 articles.
1. Dimethylzirconocene−Methylaluminoxane Catalyst for Olefin Polymerization: NMR Study of Reaction Equilibria
2. Mechanism of dimethylzirconocene activation with methylaluminoxane: NMR monitoring of intermediates at high Al/Zr ratios
3. Homogeneous Ziegler–Natta catalysis. II. Ethylene polymerization by IVB transition metal complexes/methyl aluminoxane catalyst systems
4. The negative role of chloride counter-anion in the activation process of zirconocene dichloride by methylaluminoxane
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1. Ion pairing in transition metal catalyzed olefin polymerization;Advances in Organometallic Chemistry;2020
2. Mechanism of the interaction of components in the metallocene catalytic systems containing titanium and zirconium tetracyclopentadienyls and methylaluminoxane;Reaction Kinetics, Mechanisms and Catalysis;2016-06-23
3. Methylalumoxane – History, Production, Properties, and Applications;European Journal of Inorganic Chemistry;2014-12-11
4. Catalyst activation and the dimerization energy of alkylaluminium compounds;Journal of Organometallic Chemistry;2014-12
5. Silica-supported (n BuCp)2 ZrCl2 : effect of catalyst active center distribution on ethylene-1-hexene copolymerization;Polymer International;2013-08-12
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