Design of functionalized cyclic aryl ethers and alkenes and their subsequent ring-opening polymerization

The ring-opening polymerization of a variety of cyclic and bicyclic monomers that were prepared via nucleophilic aromatic substitution reactions mediated by the cyclopentadienyliron moiety was explored. The ability to design structurally different monomers using this approach, allowed for the isolat...

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Main Author: May, Leslie J.
Language:en_US
Published: 2007
Online Access:http://hdl.handle.net/1993/2577
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-MWU.1993-25772014-03-29T03:42:25Z Design of functionalized cyclic aryl ethers and alkenes and their subsequent ring-opening polymerization May, Leslie J. The ring-opening polymerization of a variety of cyclic and bicyclic monomers that were prepared via nucleophilic aromatic substitution reactions mediated by the cyclopentadienyliron moiety was explored. The ability to design structurally different monomers using this approach, allowed for the isolation of polymeric materials with different chemical and physical properties. It has been well established that organoiron complexes containing an assortment of functionalities can be prepared using this methodology. A variety of asymmetric cyclic aryl ethers were prepared following reaction of diiron complexes with a dinucleophile. Following cleavage of the metal moieties, the aromatic macrocycles were converted to the corresponding insoluble polyaromatic ethers via ring-opening polymerization in the presence of an anionic initiator. The ring-opening metathesis polymerization of a series of bicyclo[2.2.1]heptenes was also investigated. Two classes of polynorbornenes containing cationic iron moieties within their side chains were synthesized u ing organoiron chemistry, and subsequently polymerized in the presence of ruthenium-based catalyst. The resulting organometallic polynorbornenes, with terminal or lateral side chains displayed excellent solubility and thermal stability. 2007-07-12T17:49:38Z 2007-07-12T17:49:38Z 2001-06-01T00:00:00Z http://hdl.handle.net/1993/2577 en_US
collection NDLTD
language en_US
sources NDLTD
description The ring-opening polymerization of a variety of cyclic and bicyclic monomers that were prepared via nucleophilic aromatic substitution reactions mediated by the cyclopentadienyliron moiety was explored. The ability to design structurally different monomers using this approach, allowed for the isolation of polymeric materials with different chemical and physical properties. It has been well established that organoiron complexes containing an assortment of functionalities can be prepared using this methodology. A variety of asymmetric cyclic aryl ethers were prepared following reaction of diiron complexes with a dinucleophile. Following cleavage of the metal moieties, the aromatic macrocycles were converted to the corresponding insoluble polyaromatic ethers via ring-opening polymerization in the presence of an anionic initiator. The ring-opening metathesis polymerization of a series of bicyclo[2.2.1]heptenes was also investigated. Two classes of polynorbornenes containing cationic iron moieties within their side chains were synthesized u ing organoiron chemistry, and subsequently polymerized in the presence of ruthenium-based catalyst. The resulting organometallic polynorbornenes, with terminal or lateral side chains displayed excellent solubility and thermal stability.
author May, Leslie J.
spellingShingle May, Leslie J.
Design of functionalized cyclic aryl ethers and alkenes and their subsequent ring-opening polymerization
author_facet May, Leslie J.
author_sort May, Leslie J.
title Design of functionalized cyclic aryl ethers and alkenes and their subsequent ring-opening polymerization
title_short Design of functionalized cyclic aryl ethers and alkenes and their subsequent ring-opening polymerization
title_full Design of functionalized cyclic aryl ethers and alkenes and their subsequent ring-opening polymerization
title_fullStr Design of functionalized cyclic aryl ethers and alkenes and their subsequent ring-opening polymerization
title_full_unstemmed Design of functionalized cyclic aryl ethers and alkenes and their subsequent ring-opening polymerization
title_sort design of functionalized cyclic aryl ethers and alkenes and their subsequent ring-opening polymerization
publishDate 2007
url http://hdl.handle.net/1993/2577
work_keys_str_mv AT maylesliej designoffunctionalizedcyclicarylethersandalkenesandtheirsubsequentringopeningpolymerization
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