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Dielectric and Mechanical Properties of Diglycidyl Ether of Bisphenol A Modified by a New Fluoro-terminated Hyperbranched Poly(phenylene oxide)

机译:新型氟封端的超支化聚苯醚对双酚A二缩水甘油醚的介电和力学性能的影响

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摘要

Diglycidyl ether of bisphenol A (DGEBA)/fluoro-termi-nated hyperbranched poly(phenylene oxide) (FHPPO) composites with improved mechanical and dielectric performances were prepared by blending a FHPPO with DGEBA. The low-polarity building blocks, abundant fluorinated terminal groups, and the inherent free volume brought by FHPPO efficiently lowered the dielectric constant and the dissipation factor. The free volumes of the cured DGEBA/FHPPO composites, which were quantified by positron annihilation lifetime spectroscopy, increased with the FHPPO loading. The moisture absorption of composites also decreased after the introduction of FHPPO due to the hydrophobicity of fluorinated substituents. Dynamic mechanical analysis tests and scanning electron morphology revealed that FHPPO phase separated from the composites during the curing process. The average diameter of dispersed FHPPO particles increased proportionally with the FHPPO loading. Composites with dispersed particle size of around 150 nm showed the best comprehensive mechanical performance. In addition, incorporation of FHPPO, which has lots of aromatic structures, into DGEBA also increased the thermal stabilities.
机译:通过将FHPPO与DGEBA混合,制备了具有改善的机械和介电性能的双酚A(DGEBA)/氟端基超支化聚苯醚(FHPPO)复合材料的二缩水甘油醚。低极性构件,丰富的氟化端基以及FHPPO带来的固有自由体积有效降低了介电常数和耗散因数。固化的DGEBA / FHPPO复合材料的自由体积(通过正电子an没寿命光谱法定量)随FHPPO的加入而增加。引入FHPPO后,复合材料的吸湿性也由于氟化取代基的疏水性而降低。动态力学分析测试和扫描电子形态表明,在固化过程中,FHPPO相从复合材料中分离出来。分散的FHPPO颗粒的平均直径与FHPPO负载成比例地增加。分散粒径约为150 nm的复合材料表现出最佳的综合机械性能。另外,将具有许多芳族结构的FHPPO掺入DGEBA中也增加了热稳定性。

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