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Effects of Graphene Nanoplatelet Size and Surface Area on the AC Electrical Conductivity and Dielectric Constant of Epoxy Nanocomposites

机译:石墨烯纳米型尺寸和表面积对环氧纳米复合材料交流电导率和介电常数的影响

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摘要

Epoxy nanocomposites reinforced with various grades of multilayer graphene nanoplatelets (GNPs) are manufactured and tested. The effects of size, surface area, and concentration of GNP, as well as alternating current (AC) frequency on the electrical and dielectric properties of epoxy nanocomposites are experimentally investigated. GNPs with larger size and surface area are always beneficial to increase the electrical conductivity of the composites. However, their effects on the dielectric constant are highly dependent on GNP concentration and AC frequency. At lower GNP concentration, the dielectric constant increases proportionally with the increase in GNP size, while decreasing as the AC frequency increases. At higher GNP concentration in epoxy, the dielectric constant first increases with the increase of the GNP size, but decreases thereafter. This trend is also observed for varying the processed GNP surface area on the dielectric constant. Moreover, the variations of the electrical conductivity and dielectric constant with the GNP concentration and AC frequency are then correlated with the measured interfiller spacing and GNP diameter.
机译:制造并测试用各种等级的多层石墨烯纳米片(GNP)加强的环氧纳米复合材料。实验研究了尺寸,表面积和GNP的浓度以及对环氧纳米复合材料的电和介电性能的交流(AC)频率的影响。具有较大尺寸和表面积的GNP总是有利于增加复合材料的电导率。然而,它们对介电常数的影响高度依赖于GNP浓度和交流频率。在较低的GNP浓度下,介电常数随着GNP尺寸的增加而比例成比例,同时随着交流频率的增加而降低。在环氧树脂中的较高GNP浓度下,介电常数首先随着GNP尺寸的增加而增加,但此后减少。还观察到这种趋势,用于改变电介质常数上的加工的GNP表面积。此外,与GNP浓度和AC频率的电导率和介电常数的变化与测量的相互压制器间隔和GNP直径相关。

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