Unbridged 2-arylindenyl metallocene complexes, such as bis(2-phenylindenyl)zirconium dichloride, in the presence of methyaluminoxane (MAO) are catalyst precursors for the synthesis of elastomeric polypropylenes. The effects of 1-methyl substitution on the polymerization behavior of these unbridged 2-arylindene complexes have been studied. The reaction of the lithium salt of 1-methyl-2-phenylindene with ZrCl 4 leads to the formation of two diastereomers of bis(1-methyl-2-phenylindenyl)zirconium dichloride: rac - and meso -(1-Me-2-PhInd) 2 ZrCl 2 . The two isomers have been separated by fractional crystallization and identified by X-ray crystallography. X-ray crystallographic analysis reveals that the dihedral angles between the planes of the phenyl and the indenyl rings have significantly increased upon 1-methyl substitution (28−34° compared to 10−12° for unsubstituted (2-PhInd) 2 ZrCl 2 ), which suggests strong steric repulsion between the 1-methyl and 2-phenyl groups. In ethylene polymerization, the productivity of the catalyst derived from the meso -isomer is similar to that of the catalyst derived from (2-PhInd) 2 ZrCl 2; higher productivity is observed for the catalyst derived from the rac -isomer. In polymerization of propylene, both substituted catalysts have a significantly lower productivity than the catalyst derived from unsubstituted (2-PhInd) 2 ZrCl 2 and generate amorphous polypropylene with a low molecular weight and isotacticity.
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Kravchenko et al. (1997) studied this question.
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