Reactivity Comparison of ω-Alkenols and Higher 1-Alkenes in Copolymerization with Propylene Using An Isospecific Zirconocene-MMAO Catalyst
Copolymerizations of propylene with ω-alkenols (aluminum-protected 5-hexene-1-ol (AH) and 10-undecene-1-ol (AU)) and non-polar analogues (1-hexene and 1-dodecene) were conducted with a rac-[Me2Si(2-Me-4-Ph-Ind)2]ZrCl2 activated by modified methylaluminoxane. The catalytic system showed high activity...
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doaj-313acc8af4c04038a7b364f1f47883812020-11-24T21:43:15ZengMDPI AGPolymers2073-43602015-10-017102009201610.3390/polym7101496polym7101496Reactivity Comparison of ω-Alkenols and Higher 1-Alkenes in Copolymerization with Propylene Using An Isospecific Zirconocene-MMAO CatalystBenard Oloo Nyangoye0Tianyou Li1Long Chen2Zhengguo Cai3State Key Laboratory for Modification of Chemical Fibers and Polymer Materials,College of Material Science and Engineering, Donghua University, 2999 North Renmin Road,Shanghai 201620, ChinaState Key Laboratory for Modification of Chemical Fibers and Polymer Materials,College of Material Science and Engineering, Donghua University, 2999 North Renmin Road,Shanghai 201620, ChinaState Key Laboratory for Modification of Chemical Fibers and Polymer Materials,College of Material Science and Engineering, Donghua University, 2999 North Renmin Road,Shanghai 201620, ChinaState Key Laboratory for Modification of Chemical Fibers and Polymer Materials,College of Material Science and Engineering, Donghua University, 2999 North Renmin Road,Shanghai 201620, ChinaCopolymerizations of propylene with ω-alkenols (aluminum-protected 5-hexene-1-ol (AH) and 10-undecene-1-ol (AU)) and non-polar analogues (1-hexene and 1-dodecene) were conducted with a rac-[Me2Si(2-Me-4-Ph-Ind)2]ZrCl2 activated by modified methylaluminoxane. The catalytic system showed high activity for each copolymerization, of which value was independent on the comonomer used and decreased with the increase of the comonomer concentration. The comonomer content of the copolymers obtained also decreased with the increase of the comonomer concentration in each copolymer. The evaluation of the monomer reactivity ratios indicates a preference for the propylene insertion regardless of the last inserted monomer unit in growing polymer chain in all the copolymerizations. The relative reactivity of ω-alkenols was however significantly lower than that of non-polar analogues. These results suggested that the aluminum protection of polar monomer do not affect the activity of copolymerization but significantly decrease the comonomer reactivity.http://www.mdpi.com/2073-4360/7/10/1496metallocenepropyleneω-alkenolcopolymerizationreactivity |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Benard Oloo Nyangoye Tianyou Li Long Chen Zhengguo Cai |
spellingShingle |
Benard Oloo Nyangoye Tianyou Li Long Chen Zhengguo Cai Reactivity Comparison of ω-Alkenols and Higher 1-Alkenes in Copolymerization with Propylene Using An Isospecific Zirconocene-MMAO Catalyst Polymers metallocene propylene ω-alkenol copolymerization reactivity |
author_facet |
Benard Oloo Nyangoye Tianyou Li Long Chen Zhengguo Cai |
author_sort |
Benard Oloo Nyangoye |
title |
Reactivity Comparison of ω-Alkenols and Higher 1-Alkenes in Copolymerization with Propylene Using An Isospecific Zirconocene-MMAO Catalyst |
title_short |
Reactivity Comparison of ω-Alkenols and Higher 1-Alkenes in Copolymerization with Propylene Using An Isospecific Zirconocene-MMAO Catalyst |
title_full |
Reactivity Comparison of ω-Alkenols and Higher 1-Alkenes in Copolymerization with Propylene Using An Isospecific Zirconocene-MMAO Catalyst |
title_fullStr |
Reactivity Comparison of ω-Alkenols and Higher 1-Alkenes in Copolymerization with Propylene Using An Isospecific Zirconocene-MMAO Catalyst |
title_full_unstemmed |
Reactivity Comparison of ω-Alkenols and Higher 1-Alkenes in Copolymerization with Propylene Using An Isospecific Zirconocene-MMAO Catalyst |
title_sort |
reactivity comparison of ω-alkenols and higher 1-alkenes in copolymerization with propylene using an isospecific zirconocene-mmao catalyst |
publisher |
MDPI AG |
series |
Polymers |
issn |
2073-4360 |
publishDate |
2015-10-01 |
description |
Copolymerizations of propylene with ω-alkenols (aluminum-protected 5-hexene-1-ol (AH) and 10-undecene-1-ol (AU)) and non-polar analogues (1-hexene and 1-dodecene) were conducted with a rac-[Me2Si(2-Me-4-Ph-Ind)2]ZrCl2 activated by modified methylaluminoxane. The catalytic system showed high activity for each copolymerization, of which value was independent on the comonomer used and decreased with the increase of the comonomer concentration. The comonomer content of the copolymers obtained also decreased with the increase of the comonomer concentration in each copolymer. The evaluation of the monomer reactivity ratios indicates a preference for the propylene insertion regardless of the last inserted monomer unit in growing polymer chain in all the copolymerizations. The relative reactivity of ω-alkenols was however significantly lower than that of non-polar analogues. These results suggested that the aluminum protection of polar monomer do not affect the activity of copolymerization but significantly decrease the comonomer reactivity. |
topic |
metallocene propylene ω-alkenol copolymerization reactivity |
url |
http://www.mdpi.com/2073-4360/7/10/1496 |
work_keys_str_mv |
AT benardoloonyangoye reactivitycomparisonofōalkenolsandhigher1alkenesincopolymerizationwithpropyleneusinganisospecificzirconocenemmaocatalyst AT tianyouli reactivitycomparisonofōalkenolsandhigher1alkenesincopolymerizationwithpropyleneusinganisospecificzirconocenemmaocatalyst AT longchen reactivitycomparisonofōalkenolsandhigher1alkenesincopolymerizationwithpropyleneusinganisospecificzirconocenemmaocatalyst AT zhengguocai reactivitycomparisonofōalkenolsandhigher1alkenesincopolymerizationwithpropyleneusinganisospecificzirconocenemmaocatalyst |
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