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首页> 外文期刊>Journal of Colloid and Interface Science >A novel dispersion method comprising a nucleating agent solubilized in a microemulsion, in polymeric matrix - II. Microemulsion characterization
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A novel dispersion method comprising a nucleating agent solubilized in a microemulsion, in polymeric matrix - II. Microemulsion characterization

机译:一种新的分散方法,该方法包括将成核剂溶于微乳状液中,并溶于聚合物基体-II中。微乳液表征

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This second part of our paper focuses on structural characterization of the microemulsion for increasing the crystallization rate of polypropylene (PP) through the entrapment of nucleating agent (nucleator) HPN-68, serving as a transport vehicle. Our concept is based on creating an advantage in dispersion capability of the nucleator that is dissolved in a nanoreactor vehicle, compared with its conventional loading as a crystalline powder. The advantage was achieved by solubilizing the HPN-68 in a microemulsion to decrease its size from micro- to nanoscale. The microemulsions were introduced to the target PP using a mixer. By the end of the mixing, when the water phase had evaporated, only the nucleator and the surfactant remained in the matrix. DSC results showed a 24% improvement in nucleation efficiency of PP by this novel method. It was shown that solubilization of the nucleator depends on the water activity in the microemulsion, and the presence of the nucleator opposes formation of the W/O phase. Light scattering, SD-NMR, and SAXS results showed that HPN-68 is accommodated in the water phase and at the interface, and significantly reduces the level of order in the microemulsion. In intermediate water content, a worm-like structure was proposed instead of the classical bicontinuous one. The structure was confirmed by SAXS and SD-NMR analysis. Viscosity measurements revealed structural transitions in the microemulsions. (c) 2006 Elsevier Inc. All rights reserved.
机译:本文的第二部分着重于微乳液的结构表征,该微乳液通过截留成核剂(成核剂)HPN-68(用作运输工具)来提高聚丙烯(PP)的结晶速率。我们的概念是基于与传统的结晶粉末负载方式相比,溶解在纳米反应器载体中的成核剂在分散能力方面的优势。通过将HPN-68溶解在微乳液中以将其尺寸从微米级减小到纳米级,可以实现该优势。使用混合器将微乳液引入目标PP。在混合结束时,当水相蒸发时,仅成核剂和表面活性剂保留在基质中。 DSC结果表明,通过这种新方法,PP的成核效率提高了24%。已显示成核剂的增溶取决于微乳液中的水活性,并且成核剂的存在与W / O相的形成相反。光散射,SD-NMR和SAXS结果表明HPN-68被容纳在水相和界面中,并显着降低了微乳液中的有序水平。在中等水含量下,提出了一种蠕虫状的结构,而不是经典的双连续结构。通过SAXS和SD-NMR分析确认了结构。粘度测量揭示了微乳液中的结构转变。 (c)2006 Elsevier Inc.保留所有权利。

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