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Enhanced degradation of cellulose acetate film containing diphenyliodonium salt-benzophenone

机译:含二苯基碘鎓盐-二苯甲酮的醋酸纤维素膜的降解增强

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Cellulose acetate (degree of substitution 2.45) films containing diphenyliodonium salt and benzophenone were prepared and their degradative behavior was examined under simulated solar exposure. Acetic acid generation from the films under irradiation was greater in the co-presence of diphenyliodonium salt and benzophenone than in the sole presence of diphenyliodonium salt. Photosensitization and free-radical oxidization, which are followed by Bronsted acid generation, were postulated as the mechanism for the observed increase of deacetylation. The patterns of decreased molecular weight were different between the films with the diphenyliodonium salt and those with benzophenone; while the films with the diphenyliodonium salt kept a relatively constant molecular-weight distribution, the polydispersity increased in the films with benzophenone during the degradation. Since the synthesized characteristics of those two different patterns of change in molecular-weight distribution were observed in the co-presence of the diphenyliodonium salt and benzophenone, each additive appeared to act independently to lead to main-chain cleavage of cellulose acetate. Therefore, decrease in the molecular weight of cellulose acetate by diphenyliodonium salt did not seem to be enhanced in the co-presence with benzophenone.
机译:制备了含有二苯基碘鎓盐和二苯甲酮的醋酸纤维素膜(取代度为2.45),并在模拟的阳光照射下检查了它们的降解行为。在二苯基碘鎓盐和二苯甲酮并存的情况下,在辐照下从薄膜产生的乙酸要比仅存在二苯基碘鎓盐的情况下更大。假定光敏化和自由基氧化,随后产生布朗斯台德酸,作为观察到的脱乙酰基增加的机理。带有二苯基碘鎓盐的膜和带有二苯甲酮的膜的分子量降低的模式是不同的。虽然带有二苯基碘鎓盐的薄膜保持相对恒定的分子量分布,但是在降解过程中带有二苯甲酮的薄膜的多分散性增加。由于在二苯基碘鎓盐和二苯甲酮的共存中观察到了两种不同的分子量分布变化模式的合成特征,因此每种添加剂似乎独立发挥作用,导致乙酸纤维素的主链裂解。因此,与二苯甲酮并存时,通过二苯基碘鎓盐降低乙酸纤维素的分子量似乎没有增强。

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