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Exploration of dielectric constant dependence on evolution of microstructure in nanotube/ferroelectric polymer nanocomposites

机译:介电常数对纳米管/铁电聚合物纳米复合材料微观结构演变的依赖性

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摘要

Multiwall carbon nanotube (MWNT) with high aspect ratio (AR=125-750) was dispersed into polyvinylidene fluoride (PVDF) to fabricate the MWNT/PVDF nanocomposites. Change of dielectric constant with increasing the length of tensile strain (LTS) was observed in the MWNT/ PVDF composites with different mass concentration of MWNT (m_(MWNT)=1.0% and m_(MWNT) =2.0%), The results showed that an abrupt inerease in dielectric constant appeared when the LTS was 4 and 2 mm in the composites with m_(MWNT)=1.0% and m_(MWNT)=2.0%, respectively. By employing the evolutions of conductive pathway and microcapacitance structure during the tensile strain process, the increased dielectric constant could be explained well.
机译:将具有高纵横比(AR = 125-750)的多壁碳纳米管(MWNT)分散到聚偏二氟乙烯(PVDF)中,以制造MWNT / PVDF纳米复合材料。在不同质量浓度的MWNT(m_(MWNT)= 1.0%,m_(MWNT)= 2.0%)的MWNT / PVDF复合材料中观察到介电常数随拉伸应变长度(LTS)的增加而变化。当m_(MWNT)= 1.0%和m_(MWNT)= 2.0%的复合材料的LTS分别为4和2 mm时,介电常数会突然增加。通过利用在拉伸应变过程中导电路径和微电容结构的演变,可以很好地解释介电常数的增加。

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