Department of Polymer Science and Engineering, School of Chemistry and Biological Engineering, University of Science and Technology Beijing, Beijing 100083, P. R. China.
ACS Appl Mater Interfaces. 2012 Nov;4(11):6273-9. doi: 10.1021/am3018652. Epub 2012 Nov 6.
In this work, two series of nanocomposites of poly(vinylidene fluoride) (PVDF) incorporated with reduced graphene oxide (rGO) and poly(vinyl alcohol)-modified rGO (rGO-PVA) were fabricated using solution-cast method and their dielectric properties were carefully characterized. Infrared spectroscopy and atom force microscope analysis indicated that PVA chains were successfully grafted onto graphene through ester linkage. The PVA functionalization of graphene surface can not only prevent the agglomeration of original rGO but also enhance the interaction between PVDF and rGO-PVA. Strong hydrogen bonds and charge transfer effect between rGO-PVA and PVDF were determined by infrared and Raman spectroscopies. The dielectric properties of rGO-PVA/PVDF and rGO/PVDF nanocomposites were investigated in a frequency range from 10² Hz to 10⁷ Hz. Both composite systems exhibited an insulator-to-conductor percolating transition as the increase of the filler content. The percolation thresholds were estimated to be 2.24 vol % for rGO-PVA/PVDF composites and 0.61 vol % for rGO/PVDF composites, respectively. Near the percolation threshold, the dielectric permittivity of the nanocomposites was significantly promoted, which can be well explained by interfacial polarization effect and microcapacitor model. Compared to rGO/PVDF composites, higher dielectric constant and lower loss factor were simultaneously achieved in rGO-PVA/PVDF nanocomposites at a frequency range lower than 1 × 10³ Hz. This work provides a potential design strategy based on graphene interface engineering, which would lead to higher-performance flexible dielectric materials.
在这项工作中,使用溶液浇铸法制备了两种系列的纳米复合材料,即聚偏二氟乙烯(PVDF)掺入还原氧化石墨烯(rGO)和聚乙烯醇改性 rGO(rGO-PVA)的纳米复合材料,并对其介电性能进行了仔细的表征。红外光谱和原子力显微镜分析表明,PVA 链通过酯键成功接枝到石墨烯上。石墨烯表面的 PVA 官能化不仅可以防止原始 rGO 的团聚,还可以增强 PVDF 与 rGO-PVA 的相互作用。通过红外和拉曼光谱确定了 rGO-PVA 和 PVDF 之间的氢键和电荷转移效应。研究了 rGO-PVA/PVDF 和 rGO/PVDF 纳米复合材料在 10² Hz 至 10⁷ Hz 的频率范围内的介电性能。随着填充剂含量的增加,两种复合体系均表现出从绝缘体到导体的渗流转变。估计 rGO-PVA/PVDF 复合材料的渗流阈值为 2.24 体积%,rGO/PVDF 复合材料的渗流阈值为 0.61 体积%。在渗流阈值附近,纳米复合材料的介电常数显著提高,这可以用界面极化效应和微电容器模型很好地解释。与 rGO/PVDF 复合材料相比,rGO-PVA/PVDF 纳米复合材料在 1×10³ Hz 以下的频率范围内具有更高的介电常数和更低的损耗因子。这项工作提供了一种基于石墨烯界面工程的潜在设计策略,这将导致高性能的柔性介电材料。