Propene polymerization using Ti Cp-phosphinimide catalysts in toluene and related aromatic solvents leads to the formation of benzyl-terminated polymer chains. End-group analysis suggests that these are formed after a 2,1-insertion event; density functional theory (DFT) studies support a mechanism involving homolysis of a Ti-<i>sec</i>-alkyl bond. This reaction could enable the catalytic formation of chain-end functionalized polyolefins. More importantly, it demonstrates that Ti–C homolysis might limit activity but does not necessarily constitute an irreversible deactivation mechanism
Half-titanocenes are well known to show high activity for ethylene polymerization and good capabilit...
Bis(phenoxyimine)Ti catalysts with ortho-F-substituted phenyl rings on the N can be “living” propene...
Resting/dormant benzyl- and allyl-type Ti(IV) complexes formed under alpha-olefin polymerization con...
Propene polymerization using Ti Cp-phosphinimide catalysts in toluene and related aromatic solvents ...
Propene polymerization using Ti Cp-phosphinimide catalysts in toluene and related aromatic solvents ...
Ti–C homolysis is generally regarded as a catalyst deactivation step in olefin polymerization cataly...
Ti-C homolysis is generally regarded as a catalyst deactivation step in olefin polymerization cataly...
Even after several decades of intense research, mechanistic studies of olefin polymerization by earl...
The chain transfer to monomer reactions promoted by primary and secondary growing chains in the prop...
According to density functional calculations (BP86/AEI + ZPE level) for a model system with L = HC(O...
The mechanism responsible for the production of branched polyethylene from ethylene feed during its ...
The mechanism responsible for the production of branched polyethylene from ethylene feed during its ...
Bis(phenoxy-imine)Ti catalysts with ortho-F-substituted phenyl rings on the N can promote living pro...
Resting/dormant benzyl- and allyl-type Ti(IV) complexes formed under α-olefin polymerization condit...
Half-titanocenes are well known to show high activity for ethylene polymerization and good capabilit...
Bis(phenoxyimine)Ti catalysts with ortho-F-substituted phenyl rings on the N can be “living” propene...
Resting/dormant benzyl- and allyl-type Ti(IV) complexes formed under alpha-olefin polymerization con...
Propene polymerization using Ti Cp-phosphinimide catalysts in toluene and related aromatic solvents ...
Propene polymerization using Ti Cp-phosphinimide catalysts in toluene and related aromatic solvents ...
Ti–C homolysis is generally regarded as a catalyst deactivation step in olefin polymerization cataly...
Ti-C homolysis is generally regarded as a catalyst deactivation step in olefin polymerization cataly...
Even after several decades of intense research, mechanistic studies of olefin polymerization by earl...
The chain transfer to monomer reactions promoted by primary and secondary growing chains in the prop...
According to density functional calculations (BP86/AEI + ZPE level) for a model system with L = HC(O...
The mechanism responsible for the production of branched polyethylene from ethylene feed during its ...
The mechanism responsible for the production of branched polyethylene from ethylene feed during its ...
Bis(phenoxy-imine)Ti catalysts with ortho-F-substituted phenyl rings on the N can promote living pro...
Resting/dormant benzyl- and allyl-type Ti(IV) complexes formed under α-olefin polymerization condit...
Half-titanocenes are well known to show high activity for ethylene polymerization and good capabilit...
Bis(phenoxyimine)Ti catalysts with ortho-F-substituted phenyl rings on the N can be “living” propene...
Resting/dormant benzyl- and allyl-type Ti(IV) complexes formed under alpha-olefin polymerization con...