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首页> 外文期刊>Polymer Degradation and Stability >Accelerated Photodegradation of Solid Phase Polystyrene by Nano TiO_2-Graphene Oxide Composite under Ultraviolet radiation
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Accelerated Photodegradation of Solid Phase Polystyrene by Nano TiO_2-Graphene Oxide Composite under Ultraviolet radiation

机译:紫外线辐射下纳米TiO_2-石墨烯氧化物复合材料加速了固相聚苯乙烯的光降解

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摘要

Nano TiO_2-graphene oxide (TiO_2-GO) composites with varying weight percentages of GO were successfully developed by ultrasonication assisted hydrothermal approach and characterised. HRTEM analysis revealed that the GO sheets associated with TiO_2 have broken down into nano dimensions. Photodegradation of polystyrene (PS), PS-TiO_2 and PS-TiO_2-GO composites were studied under UV irradiation of wavelength 253 nm. Nano TiO_2-GO loaded solid phase polystyrene (PS) underwent an accelerated photodegradation compared to Pristine PS and PS-TiO_2 composite as evident from various monitoring techniques. Gel permeation chromatography (GPC) revealed that the degradation proceeded through random chain scissions decreasing the average molecular weights. PS and PS composites followed the mechanism of photo oxidative degradation as evident from FTIR. Maximum degradation percentage was observed in PS-TiO_2-30%GO compared to the other specimens under study. Mechanical properties including tensile and flexural strengths which were found to be higher for the PS composites compared to pristine PS, decreased appreciably upon UV irradiation due to deterioration of polymer chain. Dielectric strength of the PS composites also decreased as a consequence of photodegradation revealing the formation of charge centers within the polymer chain. Dielectric permittivity of the polymer specimens under study increased upon UV irradiation suggesting the formation of more polar centers. The improved thermal stability of PS composites compared to pristine PS decreased due to photodegradation of the polymer chain. The glass transition temperature (Tg) and decomposition temperature lowered as a consequence of chain scission of polymer specimens caused by photodegradation. Photocatalytic activity of nano TiO_2 was enhanced upon its surface modification using GO for the photodegradation of PS under UV radiation.
机译:通过超声波辅助水热法成功开发了具有不同重量百分比的纳米TiO_2-石墨烯氧化物(TiO_2-GO)复合材料,并表征。 HRTEM分析表明,与TiO_2相关的Go纸张已经分解为纳米尺寸。在波长253nm的UV照射下研究了聚苯乙烯(PS),PS-TiO_2和PS-TiO_2-GO复合材料的光降解。纳米TiO_2-GO加载的固相聚苯乙烯(PS)经历了与原始PS和PS-TiO_2复合材料相比的加速光降解,从各种监测技术中是明显的。凝胶渗透色谱(GPC)显示通过随机链缩合进行的降解降低了平均分子量。 PS和PS复合材料遵循光氧化降解的机制,从FTIR中显而易见。与正在研究的其他标本相比,在PS-TiO_2-30%中观察到最大降解百分比。与原始PS相比,被发现对于PS复合材料的抗拉和弯曲强度的机械性能较高,由于聚合物链的劣化,UV辐射在UV照射时显着降低。由于光降解显示聚合物链内的电荷中心的形成,PS复合材料的介电强度也降低。在紫外线照射时,研究的聚合物样本的介电介电常数增加了更加极性中心的形成。由于聚合物链的光降解,与原始PS相比,PS复合材料的热稳定性提高。玻璃化转变温度(Tg)和分解温度降低了光降解引起的聚合物试样的链裂。在UV辐射下使用PS的光降解,在其表面改性时增强了纳米TiO_2的光催化活性。

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