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Optical Transport Properties of Oriented Isotactic Polypropylene and Carbon Nanotube Nanocomposite Thin Films

机译:取向全同立构聚丙烯和碳纳米管纳米复合薄膜的光学传输性能

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Optical transport through Isotactic Polypropylene (iPP) and multiwall carbon nanotubes (MWCNTs) nanocomposite thin films is important to many applications where optical transmission or polarization are used. Especially interesting is the case where the optical properties are anisotropic as in oriented thin films and the optical transport is different in the direction of orientation and perpendicular to it. Changing the orientation of the film or the polarization of the light can change the way in which the nanocomposite film interacts with light. Our polymer of choice, Isotactic Polypropylene, is one of the most widely used polymers which will increase the applicability of our results. We blended iPP with different concentration of carbon nanotubes (CNTs): 1%, 2% and 5% and oriented the thin film samples using melt-shear at 200°C and 1Hz in a Linkam microscope sharing hot stage. We measured that the index of refraction of the nanocomposites slightly decreased when CNTs are added and that when nanocomposites were shear-oriented at low loading of CNTs the index of refraction showed small difference in directions parallel and perpendicular to the direction of orientation. The extinction coefficient increased therefore it's tuning in the nanocomposite films by the content of the carbon nanotubes can help devise new materials with the desired values of this property.
机译:通过全同立构聚丙烯(IPP)和多壁碳纳米管(MWCNT)纳米复合薄膜的光学传输对于许多应用光学传输或极化的应用是重要的。特别有趣的是在取向薄膜中的光学性质是各向异性的情况的情况,并且光学传输在取向方向上不同,并且垂直于它。改变薄膜的取向或光的偏振可以改变纳米复合膜与光相互作用的方式。我们的首选聚合物,全同立构聚丙烯,是最广泛使用的聚合物之一,这将增加我们的结果适用性。我们将IPP与不同浓度的碳纳米管(CNT)(CNT):1%,2%和5%,并在Linkam显微镜共享热阶段的200℃和1Hz中使用熔融剪切取向薄膜样品。当添加CNT时,测量纳米复合材料的折射率略微降低,并且当纳米复合材料在CNT的低负载下剪切取向时,折射率平行的方向和垂直于取向方向的方向差异。由于碳纳米管的含量,消光系数增加了它在纳米复合膜中调节,可以帮助设计具有该性质的所需值的新材料。

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