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首页> 外文期刊>Advanced Science >High Discharge Energy Density at Low Electric Field Using an Aligned Titanium Dioxide/Lead Zirconate Titanate Nanowire Array
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High Discharge Energy Density at Low Electric Field Using an Aligned Titanium Dioxide/Lead Zirconate Titanate Nanowire Array

机译:使用对准的二氧化钛/铅锆钛酸盐钛酸盐纳米线阵列在低电场下具有高放电能量密度

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Polymer‐based capacitors with high energy density have attracted significant attention in recent years due to their wide range of potential applications in electronic devices. However, the obtained high energy density is predominantly dependent on high applied electric field, e.g., 400–600 kV mm ?1 , which may bring more challenges relating to the failure probability. Here, a simple two‐step method for synthesizing titanium dioxide/lead zirconate titanate nanowire arrays is exploited and a demonstration of their ability to achieve high discharge energy density capacitors for low operating voltage applications is provided. A high discharge energy density of 6.9 J cm ?3 is achieved at low electric fields, i.e., 143 kV mm ?1 , which is attributed to the high relative permittivity of 218.9 at 1 kHz and high polarization of 23.35 μC cm ?2 at this electric field. The discharge energy density obtained in this work is the highest known for a ceramic/polymer nanocomposite at such a low electric field. The novel nanowire arrays used in this work are applicable to a wide range of fields, such as energy harvesting, energy storage, and photocatalysis.
机译:近年来,由于高能量密度的聚合物电容器在电子设备中的广泛应用,备受关注。但是,所获得的高能量密度主要取决于高施加电场,例如400-600 kV mm?1,这可能带来更多与失效概率有关的挑战。在此,我们采用了一种简单的两步法合成二氧化钛/锆钛酸钛酸铅纳米线阵列,并展示了其为低工作电压应用获得高放电能量密度电容器的能力。在低电场(即143 kV mm?1)下实现了6.9 J cm?3的高放电能量密度,这是由于在1 kHz时具有218.9的高相对介电常数和在23 kHz时具有23.35μCcm?2的高极化。电场。在如此低的电场下,这项工作中获得的放电能量密度是陶瓷/聚合物纳米复合材料已知的最高能量密度。在这项工作中使用的新型纳米线阵列可应用于广泛的领域,例如能量收集,能量存储和光催化。

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