Polarographic studies of CpTiCl2(OC6H4X-p)/MAO and EPR studies of CpTiCl2(OC6H4X-p)/MAO/styrene systems
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Process Chemistry and Technology,Catalysis
Reference10 articles.
1. Butadiene polymerization with various half-titanocenes
2. Syndiospecific polymerization of styrene
3. Reductive Decomposition of Cationic Half-Titanocene(IV) Complexes, Precursors of the Active Species in Syndiospecific Styrene Polymerization
4. Syndiospecific polymerization of styrene. 3. Catalyst structure
5. (η5-C5H5)TiCl2(OC6H4X): synthesis and properties (X = NO2, Cl, CH3)
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1. Hydrogenation of C=C bonds in styrene-isoprene-styrene block copolymers in the presence of monocyclopentadienyl titanium(IV) catalytic systems;Polimery;2012-04
2. Hydrogenation of C=C bonds in styrene-butadiene-styrene block copolymers in the presence of monocyclopentadienyl titanium(IV) catalytic systems;Polimery;2011-04
3. Recent transition metal catalysts for syndiotactic polystyrene;Progress in Polymer Science;2009-08
4. SYNDIOSPECIFIC POLYMERIZATION OF STYRENE WITH Ar[O,O/NH]Cp*TiCl ACTIVATED WITH MMAO;Chinese Journal of Polymer Science;2009
5. Study on the NaNp/CpTiCl3/Al2O3–SiO2 system;Journal of Colloid and Interface Science;2007-09
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