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Analysis of Nanodomain Composition in High-Impact Polypropylene by Atomic Force Microscopy-Infrared

机译:原子力显微镜-红外分析高影响力聚丙烯中的纳米域组成

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摘要

In this paper, compositions of nanodomains in a commercial high-impact polypropylene (HIPP) were investigated by an atomic force microscopy-infrared (AFM-IR) technique. An AFM-IR quantitative analysis method was established for the first time, which was then employed to analyze the polyethylene content in the nanoscopic domains of the rubber particles dispersed in the polypropylene matrix. It was found that the polyethylene content in the matrix was dose to zero and was high in the rubbery intermediate layers, both as expected. However, the major component of the rigid cores of the rubber particles was found to be polypropylene rather than polyethylene, contrary to what was previously believed. The finding provides new insight into the complicated structure of HIPPs, and the AFM-IR quantitative method reported here offers a useful tool for assessing compositions of nanoscopic domains in complex polymeric systems.
机译:在本文中,通过原子力显微镜红外(AFM-IR)技术研究了商用高抗冲聚丙烯(HIPP)中纳米域的组成。首次建立了AFM-IR定量分析方法,然后将其用于分析分散在聚丙烯基质中的橡胶颗粒的纳米域中的聚乙烯含量。发现基质中的聚乙烯含量为零且在橡胶状中间层中较高,两者均符合预期。然而,发现橡胶颗粒的刚性核的主要成分是聚丙烯而不是聚乙烯,这与以前认为的相反。这一发现为HIPPs的复杂结构提供了新的见识,这里报道的AFM-IR定量方法为评估复杂聚合物系统中纳米域的组成提供了有用的工具。

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