In situ self assembly of nanocomposites: Competition of chaotic advection and interfacial effects as observed by X-ray diffreaction

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Abstract

The effects of chaotic advection on the in situ assembly of a hierarchal nanocomposite of Poly Amide 6, (nylon 6 or PA6) and platelet shape nanoparticles (NPs) were studied. The assemblies were formed by chaotic advection, where melts of pristine PA6 and a mixture of PA6 with NPs were segregated into discrete layers and extruded into film in a continuous process. The process assembles the nanocomposite into alternating pristine-polymer and oriented NP/polymer layers. The structure of these hierarchal assemblies was probed by X-rays as a processing parameter, N, was varied. This parameter provides a measure of the extent of in situ structuring by chaotic advection. We found that all assemblies are semi-crystalline at room temperature. Increasing N impacts the ratio of α to γ crystalline forms. The effects of the chaotic advection vary with the concentration of the NPs. For nanocomposites with lower NP concentrations the amount of the γ crystalline form increased with N. However, at higher NP concentrations, interfacial effects of the NP play a significant role in determining the structure, where the NPs oriented along the melt flow direction and the polymer chains oriented perpendicular to the NP surfaces.

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Ratnaweera, D. R., Mahesha, C., Zumbrunnen, D. A., & Perahia, D. (2014). In situ self assembly of nanocomposites: Competition of chaotic advection and interfacial effects as observed by X-ray diffreaction. Nanomaterials, 5(1), 351–365. https://doi.org/10.3390/nano5010351

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