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Ceria doped mullite reinforced polybenzoxazine nanocomposites with improved UV-shielding and thermo-mechanical properties

机译:Ceria掺杂莫来石增强聚苯噻嗪胺纳米复合材料,具有改善的紫外线屏蔽和热机械性能

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In this present work, the UV shielding behavior of various mol percent of Ce doped mullite samples (CM0-5) were studied. The UV shielding behavior of mullite increasing with respect to ceria and reaching 78% of shielding tendency at 300 nm for CM5 was one of the fascinating outcomes of the study. Based on its exhibition of high shielding tendency, CM5 was chosen and functionalized with Glycidyl terminated silane. Subsequently, the resultant functionalized ceria doped mullite (FCM) was reinforced with polybenzoxazine (PBZ) matrix in order to build up FCM/PBZ nanocomposites. A detailed study was also conducted on the level of influence FCM yields in impacting properties such as UV shielding and thermo-mechanical nature of FCM/PBZ nanocomposites. Upon analysis, it was determined that the 1.5 wt% FCM reinforced PBZ nanocomposite delivered 89% and 78% shielding efficiency at 300 and 200 nm UV region, respectively. Furthermore studies indicated that it exhibited 34% improved char yield, enhanced tensile strength, that is, 24.81% and 162 degrees C as its glass transition temperature in comparison with neat PBZ matrix and other FCM/PBZ nanocomposites. These results suggest that the Ce doped mullite with high UV shielding properties can be used as a reinforcement to increase the UV shielding tendency of polymeric material which is of industrial significance. POLYM. COMPOS., 39:2073-2080, 2018. (c) 2016 Society of Plastics Engineers
机译:本文研究了不同摩尔分数Ce掺杂莫来石样品(CM0-5)的紫外屏蔽性能。莫来石对氧化铈的紫外屏蔽性能随着氧化铈的增加而增加,在300 nm处对CM5的屏蔽趋势达到78%,这是该研究的一个有趣结果。基于其高屏蔽倾向性,选择了CM5,并用端缩水甘油基硅烷对其进行功能化。随后,用聚苯并恶嗪(PBZ)基体增强合成的功能化掺铈莫来石(FCM),以构建FCM/PBZ纳米复合材料。还详细研究了FCM产量对FCM/PBZ纳米复合材料的紫外线屏蔽和热机械性质等冲击性能的影响程度。经分析,确定1.5 wt%FCM增强PBZ纳米复合材料在300和200 nm UV区域的屏蔽效率分别为89%和78%。此外,研究表明,与纯PBZ基体和其他FCM/PBZ纳米复合材料相比,它的焦炭产率提高了34%,抗拉强度提高了24.81%,玻璃化转变温度为162℃。这些结果表明,掺铈莫来石具有很高的紫外屏蔽性能,可以作为增强材料,提高聚合物材料的紫外屏蔽倾向,具有工业意义。博莱姆。COMPOS。,39:2073-2080, 2018. (c) 2016年塑料工程师学会

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