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Enhanced degradation of cellulose acetate films in the copresence of triphenylsulfonium salt and benzophenone

机译:三苯基ulf盐和二苯甲酮并存时,醋酸纤维素薄膜的降解增强

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摘要

To investigate whether benzophenone (BP) enhances triphenylsulfonium salt (TPS) degradation of cellulose acetate (CA) during photoirradiation, CA (degree of substitution = 2.45) films containing TPS and BP were prepared, and their degradative behavior was examined under simulated solar exposure. The irradiation-evoked generation of acetic acid from the films was greater in the copresence of TPS and BP than in the sole presence of TPS. This result indicates that the TPS was activated by BP to produce Bronsted acid, which induced the deacetylation of CA effectively. As a possible mechanism for this activation of TPS, we postulated that the TPS oxidized free-radical species induced by the photoreaction of BP, which was followed by the generation of Bronsted acid. The activation of TPS by BP did not appear to significantly accelerate the main-chain cleavage of CA because size exclusion chromatography data did not reveal any decrease in the molecular weight of CA. (C) 2008 Wiley Periodicals, Inc.
机译:为了研究二苯甲酮(BP)是否增强光辐照过程中醋酸纤维素(CA)的三苯基ulf盐(TPS)降解,制备了包含TPS和BP的CA(取代度= 2.45)膜,并在模拟阳光照射下检查了它们的降解行为。 TPS和BP共存时,薄膜诱发的乙酸辐照生成要比单独存在TPS时要大。该结果表明TPS被BP激活以产生布朗斯台德酸,其有效诱导CA的脱乙酰基作用。作为这种TPS活化的可能机制,我们推测TPS氧化了由BP的光反应诱导的自由基,然后产生了布朗斯台德酸。 BP激活TPS似乎没有显着加速CA的主链裂解,因为尺寸排阻色谱数据并未显示CA分子量的任何降低。 (C)2008 Wiley期刊公司

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