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Demonstration of ultra-high recyclable energy densities in domain-engineered ferroelectric films

机译:领域工程铁电薄膜的超高可回收能量密度演示

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摘要

Dielectric capacitors have the highest charge/discharge speed among all electrical energy devices, but lag behind in energy density. Here we report dielectric ultracapacitors based on ferroelectric films of Ba(Zr0.2,Ti0.8)O3 which display high-energy densities (up to 166 J cm–3) and efficiencies (up to 96%). Different from a typical ferroelectric whose electric polarization is easily saturated, these Ba(Zr0.2,Ti0.8)O3 films display a much delayed saturation of the electric polarization, which increases continuously from nearly zero at remnant in a multipolar state, to a large value under the maximum electric field, leading to drastically improved recyclable energy densities. This is achieved by the creation of an adaptive nano-domain structure in these perovskite films via phase engineering and strain tuning. The lead-free Ba(Zr0.2,Ti0.8)O3 films also show excellent dielectric and energy storage performance over a broad frequency and temperature range. These findings may enable broader applications of dielectric capacitors in energy storage, conditioning, and conversion.
机译:介电电容器在所有电能设备中具有最高的充电/放电速度,但能量密度却落后。在这里,我们报告了基于Ba(Zr0.2,Ti0.8)O3铁电薄膜的介电超级电容器,该电容器显示出高能量密度(高达166 J cm –3 )和效率(高达96% )。这些Ba(Zr0.2,Ti0.8)O3膜不同于典型的电极化容易饱和的铁电体,它们显示出大大延迟的电极化饱和度,该饱和度从多极状态下的残余时几乎为零连续增加到在最大电场下具有很高的值,从而大大提高了可循环利用的能量密度。这是通过相位工程和应变调整在这些钙钛矿薄膜中创建自适应纳米域结构来实现的。无铅Ba(Zr0.2,Ti0.8)O3薄膜在很宽的频率和温度范围内也显示出出色的介电和能量存储性能。这些发现可能使介电电容器在能量存储,调节和转换中具有更广泛的应用。

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