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Graphene and temperature controlled butterfly shape in permittivity-field loops of ferroelectric polymer nanocomposites

机译:铁电聚合物纳米复合材料介电常数场环中的石墨烯和温度控制的蝴蝶形状

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摘要

We report on the field-dependent polarization of graphene (GE) filled poly[vinylidene fluoride-co-trifluoroethylene] P(VDF-TrFE) nanostructures fabricated by mechanical melt mixing. This study shows an increase in effective permittivity of these nanomaterials on increasing the GE loading in a manner that is consistent with standard mixing law. Detailed characterization of the unsaturated ferroelectric hysteresis, as well as the butterfly shape of the effective permittivity versus electric bias, of the samples are presented. For GE content set to 9.1 wt. % in the samples containing 50/50 wt. % (VDF/TrFE), the maximum polarization increases by 260% with respect to that of the neat polymer matrix. With a higher VDF content, 73 wt. %, the coercive field remains constant over the range of GE content explored. Additionally, our results highlight the strong impact of the GE loading and temperature on the butterfly shape in permittivity-field loops of these nanocomposites. The experimental findings are consistent with theoretical predictions of the modified Johnson's model [Narayanan et al., Appl. Phys. Lett. 100, 022907 (2012)]. Our findings can open avenues for interplay between conductive nanofillers and ferroelectricity in soft nanomaterials with controlled phase transitions.
机译:我们报告了通过机械熔融混合制备的石墨烯(GE)填充的聚偏二氟乙烯-三氟乙烯-co-三氟乙烯-P(VDF-TrFE)纳米结构的场相关极化。这项研究表明,这些纳米材料的有效介电常数随着与标准混合定律相一致的方式的增加,而增加了GE的载量。给出了样品的不饱和铁电磁滞的详细表征,以及有效介电常数与电偏压的蝴蝶形状。对于GE含量设置为9.1重量%。含有50/50 wt。 %(VDF / TrFE),相对于纯聚合物基质的最大极化增加了260%。较高的VDF含量为73 wt。 %,矫顽场在所探查的GE含量范围内保持恒定。此外,我们的结果突出了这些纳米复合材料的介电常数场环中GE负载和温度对蝴蝶形状的强烈影响。实验结果与修改后的约翰逊模型的理论预测一致[Narayanan et al。,Appl。物理来吧100,022907(2012)]。我们的发现可以为具有受控相变的软纳米材料中的导电纳米填料和铁电之间的相互作用开辟途径。

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  • 来源
    《Applied Physics Letters》 |2017年第2期|022902.1-022902.5|共5页
  • 作者单位

    Universite de Brest, Lab-STICC, CS 93837, 6 avenue Le Gorgeu, 29238 Brest Cedex 3, France;

    Universite de Brest, Lab-STICC, CS 93837, 6 avenue Le Gorgeu, 29238 Brest Cedex 3, France;

    Universite de Brest, Lab-STICC, CS 93837, 6 avenue Le Gorgeu, 29238 Brest Cedex 3, France;

    Institut de Science des Materiaux de Mulhouse (IS2M), 15, rue Jean Starcky, BP 2488, 68057 Mulhouse Cedex, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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