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Synergistic effects of filler size on thermal annealing-induced percolation in polylactic acid (PLA)/graphite nanoplatelet (GNP) nanocomposites

机译:填料尺寸对聚乳酸(PLA)/石墨纳米膜(GNP)纳米复合材料中热退火诱导渗流的协同作用

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摘要

Two graphene-based nanofillers of different sizes were melt mixed with polylactide acid (PLA). Composite films based on graphite nanoplatelets (GNPs) with the largest lateral size showed superior electrical conductivity and a lower percolation threshold after melt-compounding and hot-pressing at room temperature. However, upon annealing in the melt, composites based on GNPs with the smallest lateral size displayed significantly improved electrical conductivity and a decrease in percolation threshold as a result of dynamic percolation while composites based on large GNPs showed hardly any change in conductivity and percolation threshold. Hybrid filler systems based on 5 wt% GNP with variable small/large GNP filler ratios displayed synergistic effects in the formation of a conductive network during thermal annealing, and an optimum filler ratio of 50/50 was found to achieve the highest conductivity after annealing. This annealing-induced increase in particle connectivity for composites based on 5 wt.% hybrid small/large GNPs was also reflected in rheological measurements by the manifestation of a plateau in the storage modulus at low frequencies after annealing while such phenomenon was not observed for nanocomposites solely based on either small or large GNPs at similar loadings.
机译:两个不同尺寸的基于石墨烯的纳米填料,用聚乳酸(PLA)熔融混合。基于纳米石墨片(的GNP)与最大的横向尺寸的复合膜显示出优异的导电性和较低的渗滤阈值的熔体配混,并在室温下热压之后。然而,当在熔融退火,复合材料基于的GNP具有最小横向尺寸显示显著改善的导电性和在逾渗阈值作为动态渗滤的结果的减少而基于大的GNP复合材料显示出在电导率和逾渗阈值几乎不发生任何变化。基于与可变小/大GNP填料比5重量%的GNP混杂填料系统在导电网络的热退火过程中形成显示协同效应,并发现的50/50的最佳填料比达到退火后的导电率最高。在粒子的连接复合材料根据5%(重量)的混合小/大的GNP该退火诱导的增加也反映在由在低频下的储能模量一高原的表现流变学测量而这样的现象不是纳米复合材料观察到被退火后仅基于在类似负载小或大的国民生产总值。

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