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首页> 外文期刊>Nanotechnology >Enhanced dielectric permittivity and suppressed electrical conductivity in polyvinylidene fluoride nanocomposites filled with 4,4 '-oxydiphenol-functionalized graphene
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Enhanced dielectric permittivity and suppressed electrical conductivity in polyvinylidene fluoride nanocomposites filled with 4,4 '-oxydiphenol-functionalized graphene

机译:增强介电介电常数和抑制填充有4,4'-氧基二酚官能化石墨烯的聚偏二氟乙烯纳米复合材料中的电导率

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摘要

Plastic film capacitors suffer from low charge storage capacity due to the low dielectric constant of the polymer (<10). We have devised a polyvinylidene fluoride ( PVDF) composite film filled with small graphene oxide ( GO) sheets that have aromatic molecules attached to their surfaces. The use of 4,4'-oxydiphenol molecules to functionalize graphene sheets is found to have a remarkable effect on enhancing the dielectric permittivity as well as reducing the electrical conductivity of the nanocomposite. When under an electric field, these molecules with an angled molecular geometry act as aligned electric dipoles to largely enhance the dielectric permittivity of the composite, reaching a level two orders of magnitude higher than that of the counterpart filled with blank graphene sheets. Also, the aromatic molecules on the graphene surface act as resistive barriers that block charge transfer between interconnected graphene sheets. As a consequence, the electric conductivity of the composite can be decreased by two orders of magnitude. The PVDF composite filled with functionalized graphene shows a percolation threshold of 13 wt% and a high dielectric constant of 1091 at 100 Hz at this point.
机译:由于聚合物(<10)的低介电常数,塑料薄膜电容器遭受低电荷存储容量。我们设计了一种填充有小石墨烯氧化物(GO)片材的聚偏二氟乙烯(PVDF)复合膜,其具有附着在其表面上的芳族分子。发现使用4,4'-oxydhenol分子官能化石墨烯片的效果显着影响提高介电介电常数以及降低纳米复合材料的电导率。当在电场下时,具有成角度的分子几何形状的这些分子用作对准的电偶极子,以大大提高复合材料的介电常数,达到比填充有空石墨烯片的对应物的两个数量级。而且,石墨烯表面上的芳族分子用作阻挡在互连的石墨烯片之间的电荷转移的电阻屏障。结果,复合材料的电导率可以减少两个数量级。填充有官能化石墨烯的PVDF复合材料显示出在此时100Hz的1091%的渗透阈值和高介电常数。

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