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Graphene/fly ash geopolymeric composites as self-sensing structural materials

机译:石墨烯/粉煤灰地聚合物复合材料作为自感结构材料

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The reduction of graphene oxide during the processing of fly ash-based geopolymers offers a completely new way of developing low-cost multifunctional materials with significantly improved mechanical and electrical properties for civil engineering applications such as bridges, buildings and roads. In this paper, we present for the first time the self-sensing capabilities of fly ash-based geopolymeric composites containing in situ reduced graphene oxide (rGO). Geopolymeric composites with rGO concentrations of 0.0, 0.1 and 0.35% by weight were prepared and their morphology and conductivity were determined. The piezoresistive effect of the rGO-geopolymeric composites was also determined under tension and compression. The Fourier transform infrared spectroscopy (FTIR) results indicate that the rGO sheets can easily be reduced during synthesis of geopolymers due to the effect of the alkaline solution on the functional groups of GO. The scanning electron microscope (SEM) images showed that the majority of pores and voids within the geopolymers were significantly reduced due to the addition of rGO. The rGO increased the electrical conductivity of the fly ash-based rGOgeopolymeric composites from 0.77 S m~(?1) at 0.0 wt% to 2.38 S m~(?1) at 0.35 wt%. The rGO also increased the gauge factor by as much as 112% and 103% for samples subjected to tension and compression, respectively.
机译:在粉煤灰基地质聚合物加工过程中减少氧化石墨烯提供了一种开发低成本多功能材料的全新方法,该材料具有显着改善的机械和电气性能,可用于土木工程应用,例如桥梁,建筑物和道路。在本文中,我们首次展示了包含原位还原氧化石墨烯(rGO)的粉煤灰基地聚合物复合材料的自感应功能。制备了rGO浓度为0.0、0.1和0.35%(重量)的地聚合物复合材料,并测定了它们的形态和电导率。还确定了在拉伸和压缩条件下rGO-地聚合物的压阻效应。傅里叶变换红外光谱(FTIR)结果表明,由于碱性溶液对GO官能团的影响,在地质聚合物的合成过程中,rGO片很容易被还原。扫描电子显微镜(SEM)图像显示,由于添加了rGO,地质聚合物中的大多数孔和空隙都大大减少了。 rGO使粉煤灰基rGO地聚合物复合材料的电导率从0.07重量%的0.77S m-1(δ1)增加到0.35重量%的2.38S m-1(δ1)。对于经受拉伸和压缩的样品,rGO还分别将规格系数提高了112%和103%。

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