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Fabrication of graphene nanosheet (GNS)-Fe3O4 hybrids and GNS-Fe3O4/syndiotactic polystyrene composites with high dielectric permittivity

机译:具有高介电常数的石墨烯纳米片(GNS)-Fe3O4杂化物和GNS-Fe3O4 /间同立构聚苯乙烯复合材料的制备

摘要

Graphene nanosheet-Fe3O4 (GNS-Fe3O 4) hybrids were obtained by a one-step solvothermal reduction of iron (III) acetylacetonate [Fe(acac)3] and graphene oxide (GO) simultaneously, which had several advantages: (1) the Fe3O 4 nanoparticles were firmly anchored on GNS surface even after mild ultrasonication; (2) the loading amount of Fe3O4 nanoparticles could be effectively controlled by changing the initial feeding weight ratio of Fe(acac)3 to GO; (3) the Fe3O4 nanoparticles were homogeneously distributed on the GNS surface without much aggregation. Composites based on syndiotactic polystyrene (sPS) and GNS-Fe 3O4 were prepared by a solution-blending method and the electric and dielectric properties of the resultant GNS-Fe3O 4/sPS composites were investigated. The percolation threshold of GNS-Fe3O4 in the sPS matrix was determined to be 9.41 vol.%. Slightly above the percolation threshold with 9.59 vol.% of GNS-Fe 3O4, the GNS-Fe3O4/sPS composite showed a high dielectric permittivity of 123 at 1000 Hz, which was 42 times higher than that of pure sPS. The AC electrical conductivity at 1000 Hz increased from 3.6 × 10-10 S/m for pure sPS to 2.82 × 10-4 S/m for GNS-Fe3O4/sPS composite containing 10.69 vol.% of GNS-Fe3O4, showing an obvious insulator-semiconductor transition.
机译:石墨烯纳米片-Fe3O4(GNS-Fe3O 4)杂化物是通过一步一步同时溶剂化还原乙酰丙酮铁(III)[Fe(acac)3]和氧化石墨烯(GO)而获得的,具有以下优点:(1)即使经过轻度超声处理,Fe3O 4纳米颗粒仍牢固地锚固在GNS表面。 (2)通过改变Fe(acac)3与GO的初始进料重量比可以有效地控制Fe3O4纳米粒子的负载量。 (3)Fe3O4纳米颗粒均匀分布在GNS表面,没有大量聚集。通过溶液共混法制备了基于间同立构聚苯乙烯(sPS)和GNS-Fe 3O4的复合材料,并研究了所得GNS-Fe3O 4 / sPS复合材料的电学和介电性能。 sPS基质中GNS-Fe3O4的渗透阈值确定为9.41 vol。%。 GNS-Fe3O4 / sPS复合材料的渗透阈值略高于9.59 vol。%的GNS-Fe 3O4,在1000 Hz时显示出123的高介电常数,这是纯sPS的42倍。 1000 Hz时的交流电导率从纯sPS的3.6×10-10 S / m增加到包含10.69 vol。%的GNS-Fe3O4的GNS-Fe3O4 / sPS复合材料的2.82×10-4 S / m -半导体过渡。

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