首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >Mechanical Properties of Poly(dopamine)-Coated Graphene Oxide and Poly(vinyl alcohol) Composite Fibers Coated with Reduced Graphene Oxide and Their Use for Piezoresistive Sensing
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Mechanical Properties of Poly(dopamine)-Coated Graphene Oxide and Poly(vinyl alcohol) Composite Fibers Coated with Reduced Graphene Oxide and Their Use for Piezoresistive Sensing

机译:聚(多巴胺)涂层的石墨烯氧化物和聚(乙烯醇)复合纤维的机械性能及其用于压阻传感的用途及其用途

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摘要

High-strength poly(vinyl alcohol) (PVA) composite fibers are successfully fabricated through gel spinning, and reinforced by poly(dopamine)-coated graphene oxide (dGO) and exterior reduced graphene oxide (rGO) coating. The mechanical properties of PVA/dGO composite fibers show a dependence on the sheet size of GO and interfacial adhesion force is formed by poly(dopamine) layers. The ultimate tensile strength and Young's modulus of PVA/dGO fibers are 1.58 and 27.2 GPa, and 68.1% and 97.1% higher than neat PVA fiber. In addition, there is an 8.2% and 21.4% increase relative to that of PVA/GO composite fiber. Moreover, exterior rGO layers are shown to reinforce the tensile strength of PVA/dGO composite fibers, and the tensile strength of rGO-coated PVA/dGO composite fibers is 1.86 GPa. An adhesion force of poly(dopamine) between GO and the PVA matrix can efficiently transfer the tensile load via strong hydrogen bonding at interface, and exterior rGO layers can offer additional tensile strength through interfacial shear strength between rGO sheets. Additionally, a piezoresistive sensing test of rGO-coated PVA/dGO fiber is shown that a gauge factor of 2.3 under 1% strain is achieved, leading to the potential use of this material in wearable strain gauges.
机译:通过凝胶纺丝成功制造高强度聚(乙烯醇)(PVA)复合纤维,并通过聚(多巴胺) - 涂覆的石墨烯(DGO)和外部还原的石墨烯(RGO)涂层增强。 PVA / DGO复合纤维的力学性能显示出对去的纸张尺寸的依赖性,并通过聚(多巴胺)层形成界面粘附力。 PVA / DGO纤维的最终拉伸强度和杨氏模量为1.58和27.2GPa,比整齐的PVA纤维高出68.1%和97.1%。此外,相对于PVA /去复合纤维的增加,增加了8.2%和21.4%。此外,显示外部rgo层以增强PVA / DGO复合纤维的拉伸强度,RGO涂层PVA / DGO复合纤维的拉伸强度为1.86GPa。 Go和PVA基质之间的聚(多巴胺)的粘附力可以通过在界面上的强氢键有效地传递拉伸载荷,并且外部RGO层可以通过RGO板之间的界面剪切强度提供额外的拉伸强度。另外,涂覆的Rgo涂覆的PVA / DGO纤维的压阻感测试验表明,实现了在1%菌株下的2.3的规格因子,导致该材料在可穿戴应变仪中的潜在使用。

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