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Effective method for the synthesis of pimelic acid/TiO2 nanoparticles with a high capacity to nucleate beta-crystals in isotactic polypropylene nanocomposites

机译:有效合成等规聚丙烯纳米纳米复合物中具有高成核能力的庚二酸/ TiO2纳米粒子的有效方法

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Functionalized titanium dioxide (TiO2) nanospheres with pimelic acid (TiO2-PA) were synthesized through a novel and effective route, where the goal was to promote a high percentage of beta-crystal into a matrix of isotactic polypropylene (iPP) by the use of low amount of nucleating agent. The successful chemical attachment of pimelic acid onto the TiO2 surface was indicated by the presence of a new band at 1575 cm(-1) and an increase in the thermal stability of the PA of approximately 200 A degrees C, which were observed through infrared spectra and thermogravimetric techniques, respectively. The iPP nanocomposite was analyzed by differential scanning calorimetry and wide-angle X-ray diffraction in order to identify beta-crystals. An exothermic peak at 152 A degrees C and a diffraction peak at 2 theta = 16.2A degrees confirmed the ability of the TiO2-PA nanoparticles to promote the beta-crystal phase in the iPP nanocomposite even at low percentages (0.1 % w/w).About 85 % of beta-crystal content was promoted with the TiO2-PA particles, that was significantly higher than the 25 % obtained by unmodified TiO2 particles. Moreover, from visco-elastic analysis, it is evident that TiO2-PA particles help to improve the dissipation energy by effect of the promoted beta-crystal phase in the polymer composites. Likewise, the AFM images provide evidence of the incompatibility of TiO2 particles with the iPP matrix showing protruding reliefs in comparison with the homogeneous topography of the iPP/TiO2-PA composite. This results were confirmed by SEM, where the exclusion of TiO2 particles was evident.
机译:通过新颖而有效的途径合成了具有庚二酸(TiO2-PA)的功能化二氧化钛(TiO2)纳米球,其目标是通过使用以下方法,将高百分比的β晶体促进成等规聚丙烯(iPP)基质少量的成核剂。通过在1575 cm(-1)处出现新谱带以及通过红外光谱观察到PA的热稳定性提高了大约200 A摄氏度,表明了庚二酸在TiO2表面上成功的化学附着。和热重技术。通过差示扫描量热法和广角X射线衍射分析了iPP纳米复合材料,以鉴定β-晶体。 152 A℃的放热峰和2 theta = 16.2 A的衍射峰证实了TiO2-PA纳米颗粒即使在低百分比(0.1%w / w)下也能促进iPP纳米复合材料中β晶相的能力。 TiO2-PA颗粒可促进约85%的β-晶体含量,这明显高于未改性的TiO2颗粒所占的25%。而且,从粘弹性分析中可以明显看出,TiO2-PA颗粒通过聚合物复合物中促进的β-晶相的作用有助于改善耗散能。同样,与iPP / TiO2-PA复合材料的均匀形貌相比,AFM图像提供了TiO2颗粒与iPP基质不相容的证据,显示出凸起的凸起。 SEM证实了该结果,其中明显排除了TiO 2颗粒。

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