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An innovative method to reduce the energy loss of conductive filler/polymer composites for charge storage applications

机译:减少用于电荷存储应用的导电填料/聚合物复合材料的能量损失的创新方法

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摘要

In this study, we present conductive filler alignment as a novel approach to reduce the dissipation factor of conductive filler/polymer composites and to widen the typically narrow concentration window near the percolation threshold, which is used to tune the dielectric properties, i.e., real permittivity and imaginary permittivity. The effects of multi-walled carbon nanotube (MWCNT) alignment on the dielectric properties for MWCNT/polystyrene composites in the X-band (8.2-12.4 GHz) were investigated by comparing the dielectric properties of injection moulded samples, where MWCNTs were aligned, versus compression moulded samples, where MWCNTs were randomly distributed. Raman spectroscopy technique was employed to verify partial alignment of MWCNTs in the injection moulded samples. The compression moulded samples showed an insulator-conductor transition window at 0.50-2.00 wt% of MWCNT, whereas the injection moulded samples showed a significantly wider transition window at 3.50-10.00 wt% of MWCNT. Broader insulator-conductor transition window reduces challenges and risks in manipulating conductive filler/polymer composites around the percolation threshold to regulate the dielectric properties. Moreover, it was observed that MWCNT alignment improved the dielectric properties by reducing the dissipation factor. For instance, at MWCNT concentrations of 0.50 and 2.00 wt%, the compression moulded samples showed dissipation factors of 0.06 and 0.59, respectively, while the injection moulded samples presented the dissipation factors considerably lower and equal to 0.01 and 0.18, respectively. This study shows that injection moulding process, as an industrial technique, can be employed to improve significantly the dielectric properties of conductive filler/polymer composites for charge storage applications.
机译:在这项研究中,我们提出了一种导电填料排列的新方法,以减少导电填料/聚合物复合材料的耗散因数,并在渗透阈值附近加宽通常较窄的浓度窗口,该窗口用于调整介电性能,即实际介电常数和虚电容率。通过比较MWCNT对准的注塑样品的介电性能,研究了多壁碳纳米管(MWCNT)对准对X波段(8.2-12.4 GHz)MWCNT /聚苯乙烯复合材料介电性能的影响。 MWCNTs随机分布的压缩成型样品。拉曼光谱技术用于验证注塑样品中MWCNT的部分对齐。压模样品在MWCNT的0.50-2.00wt%处显示出绝缘体-导体的转变窗口,而注射模制样品在MWCNT的3.50-10.00wt%处显示出明显更宽的转变窗口。较宽的绝缘体-导体过渡窗口减少了在渗透阈值附近调节导电填料/聚合物复合材料以调节介电性能的挑战和风险。此外,观察到MWCNT取向通过降低耗散因数而改善了介电性能。例如,在MWCNT浓度为0.50和2.00 wt%的情况下,压模样品的耗散系数分别为0.06和0.59,而注塑样品的耗散系数显着降低,分别等于0.01和0.18。这项研究表明,注塑成型工艺作为一种工业技术,可以用来显着改善用于电荷存储应用的导电填料/聚合物复合材料的介电性能。

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