Unique catalytic behavior of chromium complexes having halogenated bis(imino)pyridine ligands for ethylene polymerization
Reactions of CrCl3(thf)3 with bis(imino)pyridines gave a series of {bis(imino)pyridine}chromium(III) trichloride complexes, {2,6‐(RNCMe)2C5H3N}CrCl3 [R = C6H 3iPr2‐2,6 (1), C6H3Et2‐2,6 (2), C6H3Me2‐2,6 (3), C6H2Me3‐2,4,6 (4), C6H3Me2‐3,5 (5), C6H5 (6), cyclohexyl (7), 2‐methyl‐1‐naphthyl (8), C6H3F...
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Veröffentlicht in: | Journal of polymer science. Part A, Polymer chemistry Polymer chemistry, 2005-08, Vol.43 (15), p.3368-3375 |
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Zusammenfassung: | Reactions of CrCl3(thf)3 with bis(imino)pyridines gave a series of {bis(imino)pyridine}chromium(III) trichloride complexes, {2,6‐(RNCMe)2C5H3N}CrCl3 [R = C6H 3iPr2‐2,6 (1), C6H3Et2‐2,6 (2), C6H3Me2‐2,6 (3), C6H2Me3‐2,4,6 (4), C6H3Me2‐3,5 (5), C6H5 (6), cyclohexyl (7), 2‐methyl‐1‐naphthyl (8), C6H3F2‐2,6 (9), C6H3Br2‐2,6 (10), C6F5 (11)]. Pseudo‐octahedral geometries of 6, 10, and 11 were revealed by X‐ray crystallography. The complexes having bulky substituents such as 1–4 showed high activity for ethylene polymerization in combination with modified methylaluminoxane (MMAO) to give linear polyethylenes. In sharp contrast, the pentafluorophenyl complex 11/modified methylaluminoxane system was found to be moderately active for ethylene homopolymerization to give moderately branched polyethylene with only ethyl branches. © 2005 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 43: 3368–3375, 2005
A series of {bis(imino)pyridine}chromium(III) trichloride complexes, {2,6‐(RNCMe)2C5H3N}CrCl3, was synthesized, and was shown to be a highly active catalyst for ethylene polymerization in the presence of MMAO. A pentafluorophenyl complex system produced moderately branched polyethylene with only ethyl branches, while the complexes with bulky substituents gave linear polyethylene. |
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ISSN: | 0887-624X 1099-0518 |
DOI: | 10.1002/pola.20767 |