4.7 Article

Grafting-from polymerization for uniformly bulk modification of pre-existing polymer materials via a supercritical-fluid route

Journal

POLYMER
Volume 49, Issue 2, Pages 474-480

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.polymer.2007.11.028

Keywords

supercritical CO2; grafting-from polymerization; polymeric materials

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A novel approach to uniformly bulk graft modification of pre-existing polymer materials without ungrafted homopolymers was achieved at relatively low temperature by means of gamma (gamma)-rays pre-irradiation-induced grafting-from polymerization with supercritical carbon dioxide (scCO(2)) both as solvent and as swelling agent. The polymer substrates were first irradiated with gamma-rays originated from cobalt-60 resource under nitrogen atmosphere at ambient temperature, and thereby leading to uniform formation of trapped radicals on polymer backbone. Then, the produced polymer-trapped radicals were utilized to initiate graft polymerization of vinyl monomers dissolved in scCO(2) within polymer substrates. A combination of transmission electron microscopy, scanning electron microscopy and elemental analysis shows that side graft chains covalently bonded to polymer substrate backbone in nanometer scale are uniformly dispersed within polymer membranes with a thickness of 5 mm. Alterimg the experimental conditions can easily control the grafting yield with regard to side graft-chain length. This method can also be applied to various functional polymer chains covalently attached to different polymer substrates, even with high viscosity or limited solubility. The novel graft-polymer materials produced by this method are not formed in the absence Of scCO(2) and are impossible to prepare by conventional methodologies. (c) 2007 Elsevier Ltd. All rights reserved.

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