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Improvement in dielectric constant of carbon black/epoxy composites with separated structure by surface-modified hollow glass beads with reduced graphene oxide

机译:氧化石墨烯还原的表面改性空心玻璃微珠改善结构分离的炭黑/环氧树脂复合材料的介电常数

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摘要

The surface-modified hollow glass beads with reduced graphene oxide (rGO@HGB) were prepared by electrostatic self-assembly method and then blended with conductive carbon black (CB) and epoxy resin (EP), and were further used to prepare the CB/rGO@HGB/EP composites with segregated structure. Then microstructure, conductivity properties and dielectric properties of the composites were studied. The results show that rGO@HGB are excluded from the EP matrix, and CB particles are dispersed in the EP, forming a three-dimensional segregated percolation network in the CB/rGO@HGB/EP composites. rGO is coated on the surface of HGB to form a conductive bridge with the CB segregated conductive network, resulting in an efficient synergistic effect for improvement of conductive property and dielectric constant. Compared with CB/EP composites, the percolation threshold of CB/rGO@HGB/EP composites is significantly reduced to 0.08 vol%, and the electrical conductivity is greatly improved. The dielectric constant of 0.2 vol% CB/rGO@HGB/EP composites (600.27) at 1 kHz is 137 times higher than that of CB/EP composites (4.35), and the corresponding dielectric loss is only 0.08.
机译:通过静电自组装法制备具有还原氧化石墨烯的表面改性空心玻璃珠(rGO @ HGB),然后与导电炭黑(CB)和环氧树脂(EP)混合,进一步用于制备CB /具有分隔结构的rGO @ HGB / EP复合材料。然后研究了复合材料的微观结构,导电性能和介电性能。结果表明,rGO @ HGB被排除在EP基质之外,CB颗粒分散在EP中,在CB / rGO @ HGB / EP复合材料中形成三维隔离渗滤网络。 rGO涂覆在HGB的表面上,与CB隔离的导电网络形成导电桥,从而产生有效的协同效应,从而改善了导电性能和介电常数。与CB / EP复合材料相比,CB / rGO @ HGB / EP复合材料的渗滤阈值显着降低至0.08 vol%,电导率大大提高。 0.2 vol%CB / rGO @ HGB / EP复合材料(600.27)在1 kHz时的介电常数是CB / EP复合材料(4.35)的137倍,并且相应的介电损耗仅为0.08。

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