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In situ prepared PBSu/SiO2 nanocomposites. Study of thermal degradation mechanism

机译:原位制备的PBSu / SiO2纳米复合材料。热降解机理研究

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摘要

A series of nanocomposites consisted of poly(butylene succinate) (PBSu) and fumed silica nanoparticles (SiO2)were prepared using the in situ polymerization technique. The amount of SiO2 used directly affected the final molecular weight of the prepared polyesters. At a low SiO2 content (0.5 wt.%) the molecular weight obtained was higher compared to neat PBSu, however at higher concentrations this was gradually reduced. The melting point of the matrix remained unaffected by the addition of the nanoparticles, in contrast to the crystallinity, which was dramatically reduced at higher SiO2 contents. This was mainly due to the extended branching and cross-linking reactions that took place between the carboxylic end groups of PBSu and the surface silanols of the nanoparticles. Thermal degradation of the PBSu/SiO2 nanocomposites was studied by determining theirs mass loss during heating. From the variations of the activation energies, calculated from the thermogravimetric Curves, it was clear that nanocomposites containing 1 wt% SiO2 content had a higher activation energy compared to pure PBSu, indicating that the addition of the nanoparticles could slightly increase the thermal stability of the matrix. However, in PBSu/SiO2 nanocomposite containing 5 wt.% SiO2 the activation energy was smaller. This phenomenon should be attributed to the existence of extended branched and cross-linked macromolecules, which reduce the thermal stability of PBSu, rather than to the addition of fumed silica nanoparticles.
机译:采用原位聚合技术制备了一系列由聚丁二酸丁二醇酯(PBSu)和气相二氧化硅纳米颗粒(SiO2)组成的纳米复合材料。 SiO 2的用量直接影响所制备聚酯的最终分子量。在低SiO2含量(0.5 wt。%)时,与纯PBSu相比,获得的分子量更高,但是在更高浓度下,分子量逐渐降低。与结晶度相反,基质的熔点不受纳米颗粒添加的影响,结晶度在较高的SiO2含量下会显着降低。这主要是由于在PBSu的羧基端基和纳米颗粒的表面硅烷醇之间发生了扩展的支化和交联反应。通过确定其在加热过程中的质量损失,研究了PBSu / SiO2纳米复合材料的热降解。从热重曲线计算得出的活化能变化来看,很明显,与纯PBSu相比,含有1 wt%SiO2的纳米复合材料具有更高的活化能,这表明添加纳米颗粒会稍微增加PbS的热稳定性。矩阵。然而,在包含5重量%SiO 2的PBSu / SiO 2纳米复合材料中,活化能较小。这种现象应归因于存在延伸的分支和交联的大分子,这降低了PBSu的热稳定性,而不是由于添加了气相二氧化硅纳米颗粒。

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