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首页> 外文期刊>Polymer Degradation and Stability >Influence of aromatic brominated flame retardants on alkane photo-oxidation: A model and polymer study
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Influence of aromatic brominated flame retardants on alkane photo-oxidation: A model and polymer study

机译:芳族溴化阻燃剂对烷烃光氧化的影响:模型和聚合物研究

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Photochemical decomposition of decabromodiphenyl ether (I) induced by 300—400 nm light is a radical process leading to the formation of hydrobromic acid (HBr) provided there is a hydrogen donor (RH) in the system. The stepwise debromination of the aromatic ring takes place giving rise to lower brominated diphenyl ethers with a number of by-products. The hydrogen donor is converted to a corresponding R—Br derivative in this process. Free HBr is prone to photolytic decomposition, particularly at more advanced stages of conversion of (I). As shown in the polypropylene case, the radicals thus formed can actively participate in the initiation step of polyolefin chain oxidation. In the presence of HALS the HBr formation through photolysis of (I) is enhanced while the formation of R—Br is totally suppressed. The rate of disappearance of (I) is, however, not influenced by the HALS. The enhancement of HBr formation by HALS is thus attributed to a deeper stepwise debromination of (I) allowing release of more than one bromine radical per molecule of (I). The detrimental effect of brominated diphenyl ethers on the polymer UV resistance thus stems from three main reasons: HBr formation which ruins the stabiliser performance through the formation of inactive aminium salt with HALS; photolysis of HBr as well as of (I) that enhance the photoinitiation of alkane polymer photo-degradation.
机译:如果系统中有氢供体(RH),则300-400 nm的光诱导的十溴二苯醚(I)的光化学分解是一个自由基过程,导致形成氢溴酸(HBr)。发生芳环的逐步脱溴,产生具有许多副产物的低级溴化二苯醚。在该过程中,氢供体被转化为相应的R-Br衍生物。游离HBr易于光解,特别是在(I)转化的更高级阶段。如在聚丙烯情况下所示,由此形成的自由基可以积极地参与聚烯烃链氧化的引发步骤。在HALS的存在下,通过(I)的光解的HBr形成被增强,而R-Br的形成被完全抑制。但是,(I)的消失率不受HALS的影响。因此,由HALS促进的HBr形成的增强归因于(I)的更深的逐步脱溴,从而每分子(I)释放出一个以上的溴自由基。因此,溴化二苯醚对聚合物抗紫外线性的有害影响主要归因于以下三个主要原因:HBr的形成通过与HALS形成惰性铝盐而破坏了稳定剂的性能; HBr和(I)的光解作用增强了烷烃聚合物光降解的光引发作用。

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