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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Highly dispersed and electrically conductive polycarbonate/ oxidized carbon nanofiber composites for electrostatic dissipation applications
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Highly dispersed and electrically conductive polycarbonate/ oxidized carbon nanofiber composites for electrostatic dissipation applications

机译:高度分散且导电的聚碳酸酯/氧化碳纳米纤维复合材料,用于静电消散应用

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摘要

The influence of low cost, commercially oxidized carbon nanofibers (ox-CNFs) on the morphological, thermal, mechanical and electrical properties of polycarbonate (PC) composites was examined. Using a simple solution mixing process leads to good dispersion and high packing density of CNFs in the resultant composites. The composite materials exhibit a dramatic improvement in the DC conductivity; for example, increasing from 2.36 x 10~(-14) S/m for PC to ca. 10~(-2) S/m for the composite at only 3.0 wt.% of CNFs, and exhibits a very fast static charge dissipation rate. Dynamic mechanical analysis showed a remarkable increase in storage modulus (282%) at 165 °C, compared to pure PC. Thermogravimetric analysis showed that thermal stability of the composites increased by 54 °C compared to the pure PC. To our knowledge, the measured electrical conductivity and thermal properties for PC/CNF are the highest values yet reported for PC/CNF composites at comparable loadings. The AC/DC conductivity is shown to play an important role to predict the state of dispersion.
机译:考察了低成本,商业氧化的碳纳米纤维(ox-CNF)对聚碳酸酯(PC)复合材料的形态,热,机械和电性能的影响。使用简单的溶液混合工艺可在所得复合材料中实现良好的分散性和CNF的高堆积密度。复合材料在直流电导率方面有显着改善。例如,从PC的2.36 x 10〜(-14)S / m增加到大约仅占CNF的3.0 wt。%,复合材料的10〜(-2)S / m,并具有非常快的静电荷耗散率。动态力学分析显示,与纯PC相比,在165°C下储能模量显着增加(282%)。热重分析表明,与纯PC相比,复合材料的热稳定性提高了54°C。据我们所知,在可比较的载荷下,PC / CNF的电导率和热性能是迄今为止报道的PC / CNF复合材料的最高值。示出了AC / DC电导率在预测分散状态中起重要作用。

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