The effect of polymerization temperature on the structure and properties of poly(l-hexene) and poly(l-decene) prepared with a Ni(II)-diimine catalyst
PERUCH, Frédéric
Laboratoire de Chimie des polymères organiques [LCPO]
Team 1 LCPO : Polymerization Catalyses & Engineering
< Leer menos
Laboratoire de Chimie des polymères organiques [LCPO]
Team 1 LCPO : Polymerization Catalyses & Engineering
Idioma
en
Article de revue
Este ítem está publicado en
Catalysis Today. 2008, vol. 133, p. 879-885
Elsevier
Resumen en inglés
While electron-deficient metal catalysts like Ziegler-Natta and metallocenes are able to polymerize olefins producing linear polyolefins, Ni-diimine catalysts are able to produce polymers of varying structures, ranging ...Leer más >
While electron-deficient metal catalysts like Ziegler-Natta and metallocenes are able to polymerize olefins producing linear polyolefins, Ni-diimine catalysts are able to produce polymers of varying structures, ranging from irregular and amorphous to highly linear and crystalline, due to the chain walking mechanism. Our present goal is to study the effect of polymerization temperature on the structure and properties of poly(1-hexene)s and poly(1-decene)s prepared with the catalyst (iPr(2)Ph)(2)BIAN center dot Ni(NCS)(2), where BIAN is the bis(imino)acenaphthene core. The polymers were studied by H-1 and C-13 NMR, SEC and DSC. The results show off important crystallinity increase for samples prepared at high temperature, above 40 degrees C. These results are consistent with a 1,omega insertion mechanism. The latter is also corroborated by NMR study, which shows polymers with a low branch number, and isolated methyl branches predominating for high-temperature samples. Polymerization kinetic studies performed by dilatometry suggest a living character for reactions performed close to 0 degrees C and quick catalyst deactivation at 50 degrees C and above. (c) 2007 Elsevier B.V. All rights reserved.< Leer menos
Palabras clave en inglés
olefin polymerization
Ni-diimine catalysts
pseudo-halide catalysts
Orígen
Importado de HalCentros de investigación