TY - JOUR
T1 - Stereochemical control in propylene polymerization with non-bridged metallocene dichloride/methylaluminoxane
AU - Naga, N.
AU - Mizunuma, K.
PY - 1998/6
Y1 - 1998/6
N2 - Propylene polymerization was carried out with non-bridged bis(substituted-cyclopentadienyl)zirconium dichloride ((RCp)2ZrCl2)/methylaluminoxane (MAO) and bis(substituted indenyl)zirconium dichloride ((RInd)2ZrCl2)/MAO catalyst at various polymerization temperature. In the case of (RCp)2ZrCl2, the pentad meso sequence ([mmmm]) increased with lowering polymerization temperature. The isotactic sequence of polypropylene increased with an increase of formula weight of substituents in the case of mono-alkyl substituted bis(cyclopentadienyl)zirconium dichloride. The number of methyl (Me) substituents in [(CH3)n-(C5H5-n)] 2ZrCl2 effected the stereo control of polymerization of propylene, and one or two Me substitution resulted in higher isotacticity than the usage of non-or full substituted ligands. Lowering polymerization temperature gave higher isotacticity as observed in Cp2TiCl2. The (RInd)2ZrCl2 (R = non or 2-Me) showed minimum meso sequence ([mmmm]) at 0°C. Chain-end control was predominant for producing the isotactic portion. The stereoregulation energies were evaluated from the stereochemical dyad composition of the obtained polypropylenes by the Arrhenius plot of ln ([m]/[r]) versus 1/T (T = polymerization temperature (K)).
AB - Propylene polymerization was carried out with non-bridged bis(substituted-cyclopentadienyl)zirconium dichloride ((RCp)2ZrCl2)/methylaluminoxane (MAO) and bis(substituted indenyl)zirconium dichloride ((RInd)2ZrCl2)/MAO catalyst at various polymerization temperature. In the case of (RCp)2ZrCl2, the pentad meso sequence ([mmmm]) increased with lowering polymerization temperature. The isotactic sequence of polypropylene increased with an increase of formula weight of substituents in the case of mono-alkyl substituted bis(cyclopentadienyl)zirconium dichloride. The number of methyl (Me) substituents in [(CH3)n-(C5H5-n)] 2ZrCl2 effected the stereo control of polymerization of propylene, and one or two Me substitution resulted in higher isotacticity than the usage of non-or full substituted ligands. Lowering polymerization temperature gave higher isotacticity as observed in Cp2TiCl2. The (RInd)2ZrCl2 (R = non or 2-Me) showed minimum meso sequence ([mmmm]) at 0°C. Chain-end control was predominant for producing the isotactic portion. The stereoregulation energies were evaluated from the stereochemical dyad composition of the obtained polypropylenes by the Arrhenius plot of ln ([m]/[r]) versus 1/T (T = polymerization temperature (K)).
KW - Non-bridged metallocene dichloride
KW - Propylene polymerization
KW - Stereochemical control
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U2 - 10.1016/S0032-3861(97)00638-1
DO - 10.1016/S0032-3861(97)00638-1
M3 - Article
AN - SCOPUS:0032094725
SN - 0032-3861
VL - 39
SP - 2703
EP - 2708
JO - Polymer (United Kingdom)
JF - Polymer (United Kingdom)
IS - 13
ER -