An investigation of the influence of R on the abilities of the polar monomers CH2CH(CH2)8OR (R = Me, PhCH2, Ph3C, Me3Si, Ph3Si) to participate in O- rather than η2-coordination to metallocene alkene polymerization catalysts; an unanticipated role for ether oxygen coordination in promoting polymerization
Publication type: Journal Article
Publication date: 2009-08-14
scimago Q2
wos Q1
SJR: 0.653
CiteScore: 6.0
Impact factor: 3.3
ISSN: 14779226, 14779234
DOI:
10.1039/b908726e
PubMed ID:
19826718
Inorganic Chemistry
Abstract
Copolymerization of ethylene and propylene with polar monomers of the types CH(2)=CH(CH(2))(n)OH (n = 1-12) in order to introduce polar functionality into the resulting polymers is possible in principle if the hydroxyl groups of the polar monomers are masked such that they cannot coordinate to Lewis acidic catalyst sites and prevent eta(2)-alkene coordination. Although the use of hydrolysable ethers of the types CH(2)=CH(CH(2))(n)OR (R = alkyl, silyl; n = 1-12) is a protecting group strategy, which has been investigated somewhat, in fact this approach has not been investigated systematically and little is known of the effectiveness of various R groups in hindering oxygen coordination to e.g. metallocene polymerization catalyst systems. We report here the results (a) of an NMR study of reactions of an archetypal metallocene polymerization catalyst, Cp(2)ZrMe(mu-Me)B(C(6)F(5))(3), with the polar monomers CH(2)=CH(CH(2))(8)OR (R = Me, PhCH(2), Ph(3)C, Me(3)Si, Ph(3)Si), all protected versions of the readily available, long chain polar monomer 9-decen-1-ol, and (b) of an investigation of the copolymerization reactions of these same polar monomers with ethylene and propylene catalyzed by the well known rac-C(2)H(4)(Ind)(2)ZrCl(2)/MAO catalyst system. While increasing the steric requirements of the groups R does decrease the apparent abilities of the ethers to displace [BMe(C(6)F(5))(3)](-) from the [Cp(2)ZrMe](+) cation, there is no correlation of size of R with the degrees of incorporation of the polar monomers into copolymers of ethylene and propylene. Instead, a heretofore unsuspected role for catalyst activation by the ether linkage is suggested.
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Stojcevic G., Baird M. An investigation of the influence of R on the abilities of the polar monomers CH2CH(CH2)8OR (R = Me, PhCH2, Ph3C, Me3Si, Ph3Si) to participate in O- rather than η2-coordination to metallocene alkene polymerization catalysts; an unanticipated role for ether oxygen coordination in promoting polymerization // Dalton Transactions. 2009. Vol. 41. p. 8864.
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Stojcevic G., Baird M. An investigation of the influence of R on the abilities of the polar monomers CH2CH(CH2)8OR (R = Me, PhCH2, Ph3C, Me3Si, Ph3Si) to participate in O- rather than η2-coordination to metallocene alkene polymerization catalysts; an unanticipated role for ether oxygen coordination in promoting polymerization // Dalton Transactions. 2009. Vol. 41. p. 8864.
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TY - JOUR
DO - 10.1039/b908726e
UR - https://doi.org/10.1039/b908726e
TI - An investigation of the influence of R on the abilities of the polar monomers CH2CH(CH2)8OR (R = Me, PhCH2, Ph3C, Me3Si, Ph3Si) to participate in O- rather than η2-coordination to metallocene alkene polymerization catalysts; an unanticipated role for ether oxygen coordination in promoting polymerization
T2 - Dalton Transactions
AU - Stojcevic, Goran
AU - Baird, Michael
PY - 2009
DA - 2009/08/14
PB - Royal Society of Chemistry (RSC)
SP - 8864
IS - 41
PMID - 19826718
SN - 1477-9226
SN - 1477-9234
ER -
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@article{2009_Stojcevic,
author = {Goran Stojcevic and Michael Baird},
title = {An investigation of the influence of R on the abilities of the polar monomers CH2CH(CH2)8OR (R = Me, PhCH2, Ph3C, Me3Si, Ph3Si) to participate in O- rather than η2-coordination to metallocene alkene polymerization catalysts; an unanticipated role for ether oxygen coordination in promoting polymerization},
journal = {Dalton Transactions},
year = {2009},
publisher = {Royal Society of Chemistry (RSC)},
month = {aug},
url = {https://doi.org/10.1039/b908726e},
number = {41},
pages = {8864},
doi = {10.1039/b908726e}
}