Radical formation on γ‐radiolysis of poly [(methacrylic acid)‐ co ‐acrylonitrile]
Peter Fox, David J. T. Hill, Anthony P. Lang, Peter J. Pomery
Abstract
Peter Fox, David J. T. Hill, Anthony P. Lang, Peter J. Pomery
Abstract
Abstract The radicals formed on γ‐radiolysis of a series of copolymers of methacrylic acid and acrylonitrile have been investigated by ESR spectroscopy. This series of copolymers spanned the full composition range and the study was carried out at 77 K and ambient temperature. The radicals formed in the copolymers at 77 and 303 K were found to be similar to those found in the two homopolymers, but in the intermediate composition range the presence of acrylonitrile propagation radicals was also detected. These radicals were not observed to be formed in significant quantities on the radiolysis of polyacrylonitrile. They are believed to result from a scission of the main chain at methacrylic acid/acrylonitrile diad sequences following loss of the methacrylic acid carboxyl group. At 77 K, the copolymers with high methacrylic acid contents were found to be more sensitive to radical formation than the methacrylic acid homopolymer, but this enhanced sensitivity was not evident at ambient temperature, where the G ‐values for radical formation for the copolymers were slightly less than the values for the homopolymers. Copyright © 2003 Society of Chemical Industry
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Abstract The radicals formed on γ‐radiolysis of a series of copolymers of methacrylic acid and acrylonitrile have been investigated by ESR spectroscopy. This series of copolymers spanned the full composition range and the study was carried out at 77 K and ambient temperature. The radicals formed in the copolymers at 77 and 303 K were found to be similar to those found in the two homopolymers, but in the intermediate composition range the presence of acrylonitrile propagation radicals was also detected. These radicals were not observed to be formed in significant quantities on the radiolysis of polyacrylonitrile. They are believed to result from a scission of the main chain at methacrylic acid/acrylonitrile diad sequences following loss of the methacrylic acid carboxyl group. At 77 K, the copolymers with high methacrylic acid contents were found to be more sensitive to radical formation than the methacrylic acid homopolymer, but this enhanced sensitivity was not evident at ambient temperature, where the G ‐values for radical formation for the copolymers were slightly less than the values for the homopolymers. Copyright © 2003 Society of Chemical Industry
Key concepts: Methacrylic acid, Acrylonitrile, Radiolysis, Radical, Copolymer, Polyacrylonitrile, Polymer chemistry, Chemistry