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首页> 外文期刊>Journal of Applied Polymer Science >Photodegradation of polystyrene containing flame retardants: Effect of chemical structure of the additives on the efficiency of degradation
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Photodegradation of polystyrene containing flame retardants: Effect of chemical structure of the additives on the efficiency of degradation

机译:含阻燃剂的聚苯乙烯的光降解:添加剂的化学结构对降解效率的影响

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The efficiency and wavelength sensitivity of photodegradation in polystyrene (PSt) in the presence of a flame retardant were studied. The effect of the concentration of a flame retardant on the degradation of PSt was also investigated. Four kinds of flame retardant containing bromine atoms in the molecule and having the same frame structure were used. Irradiation of monochromatic radiation was carried out using the Okazaki Large Spectrograph (OLS). The degradation of the PSt matrix was followed by UV-visible and FTIR spectroscopy for the chemical changes produced. Changes in the molecular weight and its distribution were estimated from the results of a gel permeation chromatography (GPC) measurement. In all additives tested, the photodegradation of PSt was accelerated by the addition of bromine-containing flame retardants. The most effective wavelength for the main-chain scission of PSt was 280 nm for the samples containing 1 phr of the flame retardant, while this wavelength shifts to 300 nm for the samples containing 2 phr of the flame retardant. A probable reaction scheme of the accelerated degradation in the presence of a flame retardant was proposed from the experimental results. The photostability of PSt containing a flame retardant appears to depend on chemical structures of the additive and compatibility of the additives to PSt. Further studies are required to solve the role of additives in polymer matrices. (C) 1998 John Wiley & Sons, Inc. [References: 9]
机译:研究了在阻燃剂存在下聚苯乙烯(PSt)中光降解的效率和波长敏感性。还研究了阻燃剂浓度对PSt降解的影响。使用了在分子中包含溴原子并且具有相同框架结构的四种阻燃剂。使用冈崎大光谱仪(OLS)进行单色辐射的照射。 PSt基质的降解之后,通过紫外可见光谱和FTIR光谱对产生的化学变化进行观察。分子量及其分布的变化是根据凝胶渗透色谱法(GPC)的测量结果估算的。在所有测试的添加剂中,通过添加含溴的阻燃剂可加速PSt的光降解。对于含有1 phr阻燃剂的样品,PSt主链断裂的最有效波长为280 nm,而对于含有2 phr阻燃剂的样品,此波长移至300 nm。从实验结果中提出了在阻燃剂存在下加速降解的可能反应方案。包含阻燃剂的PSt的光稳定性似乎取决于添加剂的化学结构以及添加剂与PSt的相容性。需要进一步的研究来解决添加剂在聚合物基质中的作用。 (C)1998 John Wiley&Sons,Inc. [参考:9]

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