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Robust nanogenerators based on graft copolymers via control of dielectrics for remarkable output power enhancement

机译:基于接枝共聚物的稳健纳米发电机通过电介质控制可显着提高输出功率

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摘要

A robust nanogenerator based on poly(tert-butyl acrylate) (PtBA)–grafted polyvinylidene difluoride (PVDF) copolymers via dielectric constant control through an atom-transfer radical polymerization technique, which can markedly increase the output power, is demonstrated. The copolymer is mainly composed of α phases with enhanced dipole moments due to the π-bonding and polar characteristics of the ester functional groups in the PtBA, resulting in the increase of dielectric constant values by approximately twice, supported by Kelvin probe force microscopy measurements. This increase in the dielectric constant significantly increased the density of the charges that can be accumulated on the copolymer during physical contact. The nanogenerator generates output signals of 105 V and 25 μA/cm2, a 20-fold enhancement in output power, compared to pristine PVDF–based nanogenerator after tuning the surface potential using a poling method. The markedly enhanced output performance is quite stable and reliable in harsh mechanical environments due to the high flexibility of the films. On the basis of these results, a much faster charging characteristic is demonstrated in this study.
机译:通过基于原子转移自由基聚合技术的介电常数控制,证明了一种基于聚丙烯酸叔丁酯(PtBA)接枝的聚偏二氟乙烯(PVDF)共聚物的稳健纳米发电机,该纳米发电机可以显着提高输出功率。由于PtBA中酯官能团的π键键和极性特征,该共聚物主要由具有增强的偶极矩的α相组成,这导致介电常数值增加了大约两倍,并通过开尔文探针力显微镜测量得到了支持。介电常数的这种增加显着增加了在物理接触过程中可以在共聚物上累积的电荷的密度。与基于PVDF的原始纳米发电机相比,使用极化方法调整了表面电势后,纳米发电机产生的输出信号为105 V和25μA/ cm 2 ,输出功率提高了20倍。由于薄膜的高柔韧性,在恶劣的机械环境中,显着增强的输出性能非常稳定且可靠。基于这些结果,本研究证明了更快的充电特性。

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