首页> 外文期刊>Journal of Applied Polymer Science >Influence of Polarity on the Preferential Intercalation Behavior of Clay in Immiscible Polypropylene/Polystyrene Blend
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Influence of Polarity on the Preferential Intercalation Behavior of Clay in Immiscible Polypropylene/Polystyrene Blend

机译:极性对不溶混聚丙烯/聚苯乙烯共混物中粘土优先插层行为的影响

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The immiscible polypropylene (PP)/polystyrene (PS) blend was prepared via melt compounding and the preferential intercalation behavior of clay was investigated by wide angle X-ray diffraction (XRD) and transmission electron microscope (TEM). It was found that the clay platelets initially located in the PS phase in PP/PS/Clay composites and PS chains intercalated into the clay layers. However, all clay migrated from the PS phase to the modified PP phase after introducing polar maleic anhydride group (MAH) to PP chains. Interestingly, most of clay migrated from the modified PP phase to the modified PS phase again when PS matrix was modified with sulfonic group, and some enriched in the interphase region. The interaction energy density (B) of the blends was determined by combining the melting point variation with the ternary interaction model for heat of mixing. It was found that the value of B decreased with the introduction of polar group (MAH or sulfonic group), indicating that the polarization of PP and PS can enhance interaction between clay platelet and polymer component. Different interaction between clay platelet and polymer component leads to the preferential intercalation behavior. The higher polarity of the polymer generates higher interaction between clay and polymer component as well as results in stronger preferential intercalating ability. Moreover, the results of FTIR spectra after extraction of all samples gave additional explanation of the preferential intercalation behavior of clay in the immiscible PP/PS blends. On the basis of the results of the measurement mentioned above, a possible mechanism was proposed. (C) 2008 Wiley Periodicals, Inc. J Appl Polym Sci 110: 3130-3139, 2008
机译:通过熔融共混制备不溶混的聚丙烯(PP)/聚苯乙烯(PS)共混物,并通过广角X射线衍射(XRD)和透射电子显微镜(TEM)研究粘土的优先插层行为。已发现,最初位于PP / PS /粘土复合材料中的PS相中的粘土片层和PS链插入到粘土层中。但是,在将极性马来酸酐基团(MAH)引入PP链后,所有粘土都从PS相迁移到了改性PP相。有趣的是,当PS基团被磺酸基团改性时,大多数粘土又从改性PP相向改性PS相迁移,其中一些富集在相间区域。通过将熔点变化与混合热的三元相互作用模型相结合来确定共混物的相互作用能密度(B)。发现B的值随极性基团(MAH或磺酸基)的引入而降低,表明PP和PS的极化可增强粘土血小板与聚合物组分之间的相互作用。粘土血小板和聚合物组分之间的不同相互作用导致优先的插层行为。聚合物的较高极性在粘土和聚合物组分之间产生较高的相互作用,并导致较强的优先插层能力。此外,提取所有样品后的FTIR光谱结果进一步解释了在不混溶的PP / PS共混物中粘土的优先插层行为。根据上述测量结果,提出了一种可能的机制。 (C)2008 Wiley Periodicals,Inc. J Appl Polym Sci 110:3130-3139,2008

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