4.7 Article

Combined effect of β-nucleating agent and multi-walled carbon nanotubes on polymorphic composition and morphology of isotactic polypropylene

期刊

JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY
卷 107, 期 2, 页码 733-743

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SPRINGER
DOI: 10.1007/s10973-011-1637-z

关键词

Carbon nanotubes; beta-Nucleating agent; Polymorphic composition; Morphology

资金

  1. National Natural Science Foundation of China [21034005, 50903048]

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The effects of nucleating duality, imposed by a mixed nucleating agent (NA) system containing multi-walled carbon nanotubes (MWCNTs) and a rare earth (WBG), on the crystallization behaviors of isotactic polypropylene (iPP) including the peak temperature of crystallization (T (cp)), polymorphic composition, and crystalline morphology, were probed in detail by calorimetry, X-ray diffraction, and polarized light microscopy. In such mixed nucleating agent system, MWCNTs is active filler to induce alpha-nucleation for iPP, while WBG serves as beta-nucleating agent. When the WBG content was low (0.05%), the crystals of WBG were as a form of individual isotropic dendrite, and the enhancement of T (cp) was achieved by the incorporation of MWCNTs. As the WBG content was high as 0.1%, a percolated NA network consisted of needlelike crystals of WBG yielded before nucleating the prevalent crystallization of iPP. In this case, the addition of MWCNTs has no obvious effect on T (cp). However, by varying the mass proportion of MWCNTs/WBG, the polymorphic composition was adjusted significantly, indicating a nucleation competition between MWCNTs and WBG. Although the competitive growth existed between alpha-crystals nucleated by MWCNTs and beta-crystals nucleated by WBG, the formation of primary beta-crystallite was always prior to the alpha-nucleated crystallization, as confirmed by crystalline morphology. These findings are useful for developing a new pathway to prepare iPP-based composite with good mechanical property via the addition of mixed nucleating system containing active inorganic filler and beta-nucleating agent.

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