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Effect of the GO Reduction Method on the Dielectric Properties Electrical Conductivity and Crystalline Behavior of PEO/rGO Nanocomposites

机译:GO还原法对PEO / rGO纳米复合材料介电性能电导率和结晶行为的影响

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摘要

The effect of the reduction method to prepare reduced graphene oxide (rGO) on the melt linear viscoelastic properties, electrical conductivity, polymer matrix crystalline behavior and dielectric properties of PEO-rGO nanocomposites was investigated. Reduction was performed chemically with either sodium borohydride (NaBH4) or hydrazine monohydrate (N2H4·H2O) or both reduction agents consecutively as well as thermally at 1000 °C. The different reduction methods resulted in exfoliated rGO sheets with different types and amounts of remaining functional groups, as indicated by FT-IR, Raman, TGA and XRD characterization. Moreover, their electrical conductivity ranged between 10−4 and 10−1 S/cm, with the consecutive use of both chemical reduction agents being far superior. PEO nanocomposites with filler loadings of 0.5 wt %, 1 wt % and 2 wt % were prepared by solvent mixing. The rGO fillers affected the melt linear viscoelastic and crystalline behavior of the PEO matrix and resulted in nanocomposites with a substantially increased electrical conductivity. Despite the wide variability in filler conductivity, the effects on the polymer nanocomposite properties were less distinctive. A correlation was obtained between the reduction of the mobility of the polymer chains (evaluated by the glass transition temperature) and the dielectric strength of the interfacial polarisation originating from the effective entrapment of GO/rGO filler charges at the interface with the less conductive PEO. Thus, favorable interactions of the polar PEO with the filler led to reduced mobility of the PEO chains and thereby a more effective entrapment of the filler charges at the PEO interface.
机译:研究了还原方法制备还原型氧化石墨烯(rGO)对PEO-rGO纳米复合材料的熔体线性粘弹性,电导率,聚合物基体结晶行为和介电性能的影响。使用硼氢化钠(NaBH4)或一水合肼(N2H4·H2O)或两种还原剂进行化学还原,然后在1000°C下进行还原。如FT-IR,拉曼,TGA和XRD表征所示​​,不同的还原方法导致具有不同类型和数量的剩余官能团的rGO薄片脱落。此外,它们的电导率在10 -4 和10 -1 S / cm之间,并且连续使用两种化学还原剂都非常优越。通过溶剂混合制备具有0.5wt%,1wt%和2wt%的填料负载量的PEO纳米复合材料。 rGO填料影响了PEO基体的熔体线性粘弹性和结晶行为,并导致纳米复合材料的电导率大大提高。尽管填料电导率变化很大,但对聚合物纳米复合材料性能的影响却不那么明显。在聚合物链的迁移率降低(通过玻璃化转变温度评估)与界面极化的介电强度之间存在相关性,该界面极化的起因于GO / rGO填料电荷在低导电性PEO界面处的有效截留。因此,极性PEO与填料的有利相互作用导致PEO链的迁移率降低,从而使填料电荷更有效地截留在PEO界面上。

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