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Synthesis and thermal characterization of mono alkyl hepta phenyl POSS/PS nanocomposites

机译:单烷基七苯基POSS / PS纳米复合材料的合成与热表征

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摘要

Polyhedral Oligomeric Silsesquioxane (POSS)/Polystyrene (PS) nanocomposites were synthesized by in situ polymerization of styrene, in the presence of POSSs of general formula R_7R'(SiO_(1.5))_8, where R = phenyl and R' = -(CH_2)_7-CH_3, and were characterized by FTIR, ~1H NMR and SEM spectroscopy, to verify the interaction and dispersion of the filler with/into the polymeric matrix. The kinetic of degradation was studied to find a correlation with the level of POSS dispersion in polymer matrix and to evaluate the resistance to thermal degradation of the synthesized nanocomposites. To this aim, the temperature at 5% mass loss (T_5%) was take into consideration and the activation energy (E_a) of degradation were determined through literature method. The results lead us to speculate about the role of the POSS cage vertices on the influence of filler dispersion into the matrix by the comparison with similar alkyl-POSS/PS nanocomposites studied by us in the past. Thermogravimetric analysis (TGA) suggested a good improvement of the resistance to the thermal degradation in respect to neat polymer, and showed that the presence of phenyl groups at the vertices of the POSS cage led to a better dispersion and thus to a thermal stability improvement.
机译:在通式R_7R'(SiO_(1.5))_ 8的POSS存在下,通过苯乙烯的原位聚合合成多面体低聚倍半硅氧烷(POSS)/聚苯乙烯(PS)纳米复合材料,其中R =苯基,R'=-(CH_2 )_7-CH_3,并通过FTIR,〜1H NMR和SEM进行了表征,以验证填料与聚合物基体的相互作用和分散。研究了降解动力学,以发现与聚合物基质中POSS分散度的相关性,并评估了合成纳米复合材料对热降解的抵抗力。为此,考虑了质量损失为5%(T_5%)的温度,并通过文献方法确定了降解的活化能(E_a)。通过与过去研究的类似烷基-POSS / PS纳米复合材料进行比较,结果使我们推测了POSS笼形顶点对填料分散到基质中的影响。热重分析(TGA)提出了相对于纯净聚合物的抗热降解性的良好改善,并表明在POSS笼形顶点处存在苯基会导致更好的分散性,从而改善热稳定性。

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