PULSE-RADIOLYSIS IN MODEL STUDIES TOWARD RADIATION PROCESSING

被引:48
作者
VONSONNTAG, C
BOTHE, E
ULANSKI, P
DEEBLE, DJ
机构
[1] Max-Plank-Institut für Strahlenchemie, D-45413 Mülheim an der Ruhr, Stiftstr. 34-36
来源
RADIATION PHYSICS AND CHEMISTRY | 1995年 / 46卷 / 4-6期
关键词
D O I
10.1016/0969-806X(95)00209-G
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Using the pulse radiolysis technique, the OH-radical-induced reactions of poly(vinyl alcohol) PVAL, poly(acrylic acid) PAA, poly(methacrylic acid) PMA, and hyaluronic acid have been investigated in dilute aqueous solution. The reactions of the free-radical intermediates were followed by UV-spectroscopy and low-angle laser light-scattering; the scission of the charged polymers was also monitored by conductometry. For more detailed product studies, model systems such as 2,4-dihydroxypentane (for PVAL) and 2,4-dimethyl glutaric acid (for PAA) was also investigated. With PVA, OH-radicals react predominantly by abstraction of an H-atom in alpha-position to the hydroxyl group (70%). The observed bimolecular decay rate constant of the PVAL-radicals decreases with lime. This has been interpreted as being due to an initially fast decay of proximate radicals and a decrease of the probability of such encounters with time. Intramolecular crosslinking (loop formation) predominates at high doses per pulse. In the presence of O-2, peroxyl radicals are formed which in the case of the alpha-hydroxyperoxyl radicals can eliminate HO2-radicals in competition with bimolecular decay processes which lead to a fragmentation of the polymer. In PAA, radicals both in ct-position (characterized by an absorption near 300 nm) and in beta-position to the carboxylate groups are formed in an approximately 1:2 ratio. The lifetime of the radicals increases with increasing electrolytic dissociation of the polymer. The B-radicals undergo a slow (intra- as well as intermolecular) H-abstraction yielding alpha-radicals, in competition to crosslinking and scission reactions. In PMA only beta-radicals are formed. Their fragmentation has been followed by conductometry. In hyaluronic acid, considerable fragmention is observed even in the absence of oxygen which, in fact, has some protective effect against this process. Thus free-radical attack on this important biopolymer makes it especially vulnerable with respect to a reduction of its viscosity, and in rheumatic diseases this effect may be the reason for their painfulnes.
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页码:527 / 532
页数:6
相关论文
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