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Improved Energy Storage Performance of Linear Dielectric Polymer Nanodielectrics with Polydopamine coated BN Nanosheets

机译:聚多巴胺涂覆的BN纳米片改善了线性电介质聚合物纳米电介质的储能性能

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摘要

Polymer-based nanodielectrics have been intensively investigated for their potential application as energy storage capacitors. However, their relatively low energy density (Ue) and discharging efficiency (η) may greatly limit their practical usage. In present work, high insulating two-dimensional boron nitride nanosheets (BNNS), were introduced into a linear dielectric polymer (P(VDF-TrFE-CTFE)-g-PMMA) matrix to enhance the energy storage performance of the composite. Thanks to the surface coating of polydopamine (PDA) on BN nanosheets, the composite filled with 6 wt% coated BNNS (mBNNS) exhibits significantly improved breakdown strength (Eb) of 540 MV/m and an energy density (Ue) of 11 J/cm3, which are increased by 23% and 100%, respectively as compared with the composite filled with the same content of pristine BNNS. Meanwhile, η of both composites is well retained at around 70% even under a high voltage of 400 MV/m, which is superior to most of the reported composites. This work suggests that complexing polymer matrix with linear dielectric properties with surface coated BNNS fillers with high insulating 2D structure might be a facile strategy to achieve composite dielectrics with simultaneously high energy density and high discharging efficiency.
机译:基于聚合物的纳米介电材料作为储能电容器的潜在应用已得到广泛研究。但是,它们相对较低的能量密度(Ue)和放电效率(η)可能极大地限制了它们的实际使用。在目前的工作中,高绝缘二维氮化硼纳米片(BNNS)被引入到线性介电聚合物(P(VDF-TrFE-CTFE)-g-PMMA)基体中,以增强复合材料的储能性能。由于在BN纳米片上使用了聚多巴胺(PDA)的表面涂层,填充了6 wt%涂层BNNS(mBNNS)的复合材料的击穿强度(Eb)显着提高了540 MV / m,能量密度(Ue)达到了11 J / cm 3 ,与填充相同含量的原始BNNS的复合材料相比,分别增加了23%和100%。同时,即使在400 MV / m的高压下,两种复合材料的η仍能很好地保持在70%左右,这优于大多数报道的复合材料。这项工作表明,将具有线性介电特性的聚合物基体与具有高绝缘2D结构的表面涂层BNNS填料进行络合可能是实现具有高能量密度和高放电效率的复合电介质的简便策略。

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