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Effect of clay modification on the dynamic mechanical and dielectric properties of PMMA nanocomposites via melt blending

机译:熔融共混对粘土改性对PMMA纳米复合材料动态力学和介电性能的影响

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The dynamic mechanical and dielectric properties of poly(methyl methacrylate)/ clay nanocomposites (PCNs) prepared with melt blending was studied in terms of clay modification and nanoscale dispersion. The pristine clay was modified via various routes, including PMMA concentrates from in situ polymerization and POP-diamine intercalation. Partially exfoliated clay layers were uniformly dispersed in the nanocomposites as evidenced from x-ray diffraction study. The subglass β relaxation, the segmental α relaxation, and the α β-merging process above Tg were observed in the nanocomposites from the dielectric analysis. Compared to neat PMMA, with only 5 wt% clay loading, the modified PCN materials exhibit higher glass-transition temperatures and higher dynamic storage moduli, which was attributed to the polymer chain tethering and confinement effect. Significant increase in dielectric permittivity’s and losses due to interfacial polarization and ionic conduction were observed for the PCNs. The intensity of the interfacial polarization process increases with the dispersion degree of clay layers and hence the relaxation process can be assigned to the space charge polarization of the ionic species in the clay intergalleries.
机译:从粘土改性和纳米级分散的角度研究了熔融共混制备的聚甲基丙烯酸甲酯/粘土纳米复合材料的动态力学和介电性能。原始粘土可通过多种途径进行改性,包括原位聚合和POP-二胺插层的PMMA浓缩物。 X射线衍射研究表明,部分剥落的粘土层均匀地分散在纳米复合材料中。通过介电分析,在纳米复合材料中观察到亚玻璃β弛豫,分段α弛豫和高于Tg的αβ合并过程。与仅含5 wt%粘土的纯PMMA相比,改性PCN材料显示出更高的玻璃化转变温度和更高的动态储能模量,这归因于聚合物链的束缚和约束作用。对于PCN,观察到介电常数的显着增加以及由于界面极化和离子传导引起的损耗。界面极化过程的强度随黏土层的分散程度而增加,因此弛豫过程可归因于黏土壁间离子物种的空间电荷极化。

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