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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Effect of mechanical stretching on electrical conductivity and positive temperature coefficient characteristics of poly(vinylidene fluoride)/carbon nanofiber composites prepared by non-solvent precipitation
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Effect of mechanical stretching on electrical conductivity and positive temperature coefficient characteristics of poly(vinylidene fluoride)/carbon nanofiber composites prepared by non-solvent precipitation

机译:机械拉伸对非溶剂沉淀法制备的聚偏二氟乙烯/碳纳米纤维复合材料电导率和正温度系数特性的影响

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摘要

Poly(vinylidene fluoride) (PVDF)/carbon nanofiber (CNF) composites with filler content ranging from 0.047 to 4.7 vol.% were prepared with non-solvent precipitation followed by melt compression. The morphology and electrical conductivity of the composites before and after mechanical stretching were examined. The results showed that CNFs were dispersed homogeneously in the PVDF matrix and a low electrical percolation threshold of 0.90 vol.% CNFs was obtained. Mechanical stretching led to a sharp decrease in the electrical conductivity of a composite containing 0.94 vol.% CNF. This was caused by the destruction of a conducting network structure when the fillers aligned along the stretching direction. This did not happen when the filler content was increased to 1.88 vol.%. The percolating composites displayed a positive temperature coefficient (PTC) effect with the effect being larger in stretched composites. This can be attributed to the presence of PVDF β-phase in stretched composites as revealed by X-ray diffraction and Fourier transform infrared spectroscopy.
机译:制备具有0.047至4.7vol。%的填料含量的聚偏二氟乙烯(PVDF)/碳纳米纤维(CNF)复合材料,并进行非溶剂沉淀,然后进行熔体压缩。检查了机械拉伸之前和之后的复合材料的形态和电导率。结果表明,CNFs均匀分散在PVDF基质中,并获得了0.90 vol。%CNFs的低电渗阈值。机械拉伸导致包含0.94vol。%CNF的复合材料的电导率急剧下降。这是由于当填充物沿拉伸方向排列时破坏了导电网络结构。当填料含量增加到1.88vol。%时,这没有发生。渗流复合材料表现出正温度系数(PTC)效应,在拉伸复合材料中该效应更大。如X射线衍射和傅里叶变换红外光谱所揭示的,这可以归因于拉伸复合材料中PVDFβ相的存在。

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