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Electrical conduction mechanisms in graphene nanoplatelet/yttria tetragonal zirconia composites

机译:石墨烯纳米克服纤维/钇四方氧化锆复合材料中的导电机制

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摘要

Yttria tetragonal zirconia polycrystalline (3YTZP) ceramic composites with 5, 10 and 20 vol% graphene nano-platelets (GNPs) were prepared by spark plasma sintering (SPS) and their electrical conductivity as a function of temperature was characterized. The composites exhibit anisotropic microstructures so the electrical conductivity studies were carried out in two directions: perpendicular (sigma(perpendicular to)) and parallel (sigma(parallel to)) to the SPS pressing axis. The composites with 5 and 10 GNP vol% showed high electrical anisotropy, whereas the composite with 20 GNP vol % exhibited nearly isotropic electrical behavior. sigma(perpendicular to) shows metallic-type behavior in the composites with 10 and 20 vol% GNP revealing that charge transport takes place through defect-free GNPs. For the composite with 5 vol % GNP the observed semiconductor-type behavior was explained by a two dimensional variable range hopping mechanism. sigma(parallel to)shows metallic-type conductivity in the composite with 20 GNP vol% and positive d sigma(parallel to)/dT slope in the composites with 5 and 10 GNP vol%.
机译:通过火花等离子体烧结(SPS)制备具有5,10和20 Vol%石斑纳米血小板(GNPS)的钇四方氧化锆多晶(3YTZP)陶瓷复合材料及其作为温度函数的电导率。复合材料表现出各向异性微结构,因此在两个方向上进行电导率研究:垂直(σ(垂直于))和平行(Sigma(平行于))到SPS按压轴。具有5和10GNP Vol%的复合材料显示出高电各向异性,而20GNP Vol%的复合材料表现出几乎各向同性的电气行为。 Sigma(垂直于)显示了具有10和20 Vol%GNP的复合材料中的金属型行为,揭示了通过无缺陷的GNP进行电荷传输。对于具有5 Vol%GNP的复合材料,通过二维可变范围跳跃机构解释了观察到的半导体型行为。 Sigma(平行于)显示复合材料中的金属型导电性,用5和10GNP Vol%的复合材料中的20GNP Vol%和正D Sigma(平行于)/ DT斜率。

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