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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Singlet oxygen-induced photodegradation of the polymers and dyes in optical sensing materials and the effect of stabilizers on these processes
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Singlet oxygen-induced photodegradation of the polymers and dyes in optical sensing materials and the effect of stabilizers on these processes

机译:单线态氧诱导的光学传感材料中聚合物和染料的光降解以及稳定剂对这些过程的影响

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摘要

A comprehensive study of photodegradation processes in optical sensing materials caused by photosensitized singlet oxygen in different polymers is presented. The stabilities of the polymers are accessed in the oxygen consumption measurements performed with help of optical oxygen sensors. Polystyrene and poly(phenylsilesquioxane) are found to be the most stable among the polymers investigated, whereas poly(2,6-dimethyl-p-phenylene oxide) and particularly poly(methyl methacrylate) and their derivatives show the fastest oxygen consumption. The effect of the stabilizers (singlet oxygen quenchers) on the oxygen consumption rates, the photostability of the sensitizer, and the total photon emission (TPE) by singlet oxygen is studied. 1,4-Diazabicyclo[2.2. 2]octane (DABCO) was found to significantly reduce both the TPE and the oxygen consumption rates, indicating its role as a physical quencher of singlet oxygen. The addition of DABCO also significantly improved the photostability of the sensitizer. The N-alkylated derivative of DABCO and DABCO covalently grafted to the polystyrene backbone are prepared in an attempt to overcome the volatility and water solubility of the quencher. These derivatives as well as other tertiary amines investigated were found to be inefficient as stabilizing agents, and some of them even negatively affected the oxygen consumption rates.
机译:提出了光敏材料中光敏单线态氧在不同聚合物中引起的光降解过程的综合研究。聚合物的稳定性可在借助光学氧气传感器进行的耗氧量测量中获得。发现在研究的聚合物中,聚苯乙烯和聚(苯基倍半硅氧烷)是最稳定的,而聚(2,6-二甲基对苯撑氧),尤其是聚(甲基丙烯酸甲酯)及其衍生物显示出最快的耗氧量。研究了稳定剂(单氧猝灭剂)对耗氧率,敏化剂的光稳定性和单态氧的总光子发射量(TPE)的影响。 1,4-二氮杂双环[2.2。发现2]辛烷(DABCO)显着降低TPE和耗氧率,表明其作为单线态氧的物理猝灭剂。 DABCO的加入也显着提高了敏化剂的光稳定性。为了克服淬灭剂的挥发性和水溶性,制备了共价接枝到聚苯乙烯主链上的DABCO和DABCO的N-烷基化衍生物。发现这些衍生物以及其他研究的叔胺作为稳定剂效率低下,其中一些甚至对耗氧率产生负面影响。

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