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Elucidation of Conduction Mechanism in Graphene Nanoplatelets (GNPs)/Cement Composite Using Dielectric Spectroscopy

机译:介电谱法阐明石墨烯纳米片(GNPs)/水泥复合材料的导电机理

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摘要

Understanding the mechanisms that govern the conductive properties of multifunctional cement-materials is fundamental for the development of the new applications proposed to enhance the energy efficiency, safety and structural properties of smart buildings and infrastructures. Many fillers have been suggested to increase the electrical conduction in concretes; however, the processes involved are still not entirely known. In the present work, we investigated the effect of graphene nanoplatelets (1 wt% on the electrical properties of cement composites (OPC/GNPs). We found a decrease of the bulk resistivity in the composite associated to the enhancement of the charge transport properties in the sample. Moreover, the study of the dielectric properties suggests that the main contribution to conduction is given by water diffusion through the porous network resulting in ion conductivity. Finally, the results support that the increase of direct current in OPC/GNPs is due to pore refinement induced by graphene nanoplatelets.
机译:理解控制多功能水泥材料导电性能的机理对于开发旨在提高智能建筑和基础设施的能效,安全性和结构性能的新应用的开发至关重要。已经提出了许多填料来增加混凝土的导电性。但是,所涉及的过程仍不完全清楚。在本工作中,我们研究了石墨烯纳米片(1 wt%对水泥复合材料(OPC / GNPs)的电性能的影响),发现复合材料中的体电阻率降低与增强电荷传输性能有关。此外,对介电特性的研究表明,对导电性的主要贡献是水通过多孔网络扩散导致离子电导率,最后,结果支持OPC / GNP中直流电的增加是由于石墨烯纳米片引起的孔细化。

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