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首页> 外文期刊>Science Advances >A highly scalable dielectric metamaterial with superior capacitor performance over a broad temperature
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A highly scalable dielectric metamaterial with superior capacitor performance over a broad temperature

机译:高度可扩展的电介质超材料,具有卓越的电容性能在宽温度下

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摘要

Although many polymers exhibit excellent dielectric performance including high energy density with high efficiency at room temperature, their electric and dielectric performance deteriorates at high temperatures (~150°C). Here, we show that nanofillers at very low volume content in a high-temperature (high–glass transition temperature) semicrystalline dipolar polymer, poly(arylene ether urea), can generate local structural changes, leading to a marked increase in both dielectric constant and breakdown field, and substantially reduce conduction losses at high electric fields and over a broad temperature range. Consequently, the polymer with a low nanofiller loading (0.2 volume %) generates a high discharged energy density of ca. 5 J/cm 3 with high efficiency at 150°C. The experimental data reveal microstructure changes in the nanocomposites, which, at 0.2 volume % nanofiller loading, reduce constraints on dipole motions locally in the glassy state of the polymer, reduce the mean free path for the mobile charges, and enhance the deep trap level.
机译:尽管许多聚合物表现出优异的介电性能,但在室温下具有高效率的高能量密度,其电气和介电性能在高温下变差(〜150℃)。在这里,我们表明,在高温(高玻璃化转变温度)半结晶偶极聚合物中,聚(亚芳基醚尿素)在非常低的体积含量下可以产生局部结构变化,导致介电常数和介电常数的显着增加故障领域,大大降低高电场和宽温度范围内的导通损耗。因此,具有低纳米填充载荷(0.2体积%)的聚合物产生高放电能量密度。 5 J / cm 3在150°C下具有高效率。实验数据揭示纳米复合材料中的微观结构变化,在0.2体积%纳米填充物负载下,减少在聚合物的玻璃状状态下局部偶极运动的约束,减少移动电荷的平均自由路径,并增强了深度陷阱水平。

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