A new series of zirconium Metallocenes derived from partially alkylated s-indacene with potential applications in the polymerization of ethylene
Author
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Araneda, Juan Felipe
Author
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Morales Verdejo, César
Author
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Adams, Christopher
Author
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Martínez Díaz, Iván
Author
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Chávez, Ivonne
Author
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Garland, María Teresa
Author
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Rojas, René S.
Author
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Molins, Elies
Author
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Manríquez, Juan Manuel
Admission date
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2015-10-08T19:04:20Z
Available date
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2015-10-08T19:04:20Z
Publication date
dc.date.issued
2015
Cita de ítem
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Inorganica Chimica Acta 434 (2015) 121–126
en_US
Identifier
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DOI: 10.1016/j.ica.2015.05.011
Identifier
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https://repositorio.uchile.cl/handle/2250/134281
General note
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Artículo de publicación ISI
en_US
Abstract
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This contribution describes the synthesis and characterization of a series of zirconium metallocenes derived from partially alkylated s-indacene. The complexes [Cp*ZrCl2-s-Ic '' H] 1, [Cp/ZrCl2-s-Ic '' H] 3 and [CpZrCl2-s-Ic '' H] 4 (s-Ic'H = 2,6-diethyl-4,8-dimethyl-1-hydro-s-indacene; s-Ic '' H = 2,6-dibutyl-4,8-dimethyl-1-hydro-s-indacene) were synthesized from the monolithiated salts of s-indacene (s-Ic'H or s-Ic '' H) with one equivalent of C5R5ZrCl3 (R = H, CH3). All complexes here reported were characterized by means of H-1 and C-13 NMR, mass spectrometry, elemental analysis. Complexes [Cp*ZrCl2-s-Ic'H] 1 and [CpZrCl2-s-Ic'H] 2 (previously reported by NMR analysis) were characterized by X-ray diffraction. In order to gain further knowledge about their catalytic behavior, the complexes were tested in the catalysis of ethylene polymerization showing a highest activity. Complex 4 presents the highest ethylene polymerization activity than complexes 1 and 2, and 3 under the same working conditions.
en_US
Patrocinador
dc.description.sponsorship
FONDECYT
1060588
1060589
1100283
1110758
11100027
11110273
1130707
Millennium Nucleus Chemical Processes and Catalysis (CPC)
NCI20082
Ph.D. Scholarship CONICYT, Apoyo de Tesis Doctoral CONICYT Grant
24080034