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Effect of graphene oxide on the mechanical properties and the formation of layered double hydroxides (LDHs) in alkali-activated slag cement

机译:氧化石墨烯对碱激发矿渣水泥力学性能和层状双氢氧化物(LDHs)形成的影响

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摘要

Due to its high aspect ratio and outstanding tensile strength, graphene oxide (GO) can dramatically reduce the brittleness of cement-based materials. In this paper, GO nanosheets were successfully synthesised using the modified Hummers’ method. Effects of the GO on the fluidity, mechanical properties of alkali-activated slag (AAS) mortars and the microstructure of the AAS pastes were studied. It is found that addition of the GO caused a significant reduction in fluidity and a slight decrease in the compressive strength of the hardened mortars. However, the GO improved the flexural strengths by 20% with a dosage of 0.01 wt% after 7 days. Large-scale layered double hydroxides (LDHs) were observed using SEM, the compositions of which were identified and EDS and XRD. A possible mechanism of the formation of LDHs in the GO-AAS system is proposed. Due to the Mg2+/Al3+ decomposed from the slag and the Al(OH)4− formed in the high pH condition in the GO-AAS system, the reaction pathway of LDHs can be regarded as aMg2++Al(OH)−4+(2a−2)OH−+xH2O+A−⇋MgaAl(OH)2+2aA⋅xH2O(s) This research provides a further understanding of the effect of graphene oxide which has a potential application of GO in AASC.
机译:由于高纵横比和出色的拉伸强度,氧化石墨烯(GO)可以显着降低水泥基材料的脆性。在本文中,使用改良的Hummers方法成功合成了GO纳米片。研究了GO对碱活化矿渣(AAS)砂浆的流动性,机械性能以及AAS糊的微观结构的影响。已经发现,GO的加入导致流动性显着降低,硬化砂浆的抗压强度略有降低。但是,GO在7天后以0.01 wt%的剂量将抗弯强度提高了20%。使用SEM观察到大规模的层状双氢氧化物(LDHs),并鉴定了其组成以及EDS和XRD。提出了GO-AAS系统中LDH形成的可能机制。由于GO-AAS系统中高炉渣条件下Mg2 + / Al3 +从炉渣中分解出来,形成Al(OH)4-,因此LDHs的反应路径可以看作是aMg2 ++ Al(OH)-4+ (2a-2)OH- + xH2O +A-⇋MgaAl(OH)2 + 2aA·xH2O(s)这项研究提供了对氧化石墨烯效应的进一步理解,而氧化石墨烯具有潜在的应用前景。

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