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用纳米晶高熵陶瓷打破极化与电压电阻之间的相互制约。

Breaking the Mutual Constraint between Polarization and Voltage Resistance with Nanograined High-Entropy Ceramic.

作者信息

Zhou Jianying, Zheng Peng, Bai Wangfeng, Fan Qiaolan, Zheng Liang, Zhang Yang

机构信息

Lab for Nanoelectronics and Nano Devices, Department of Electronics Science and Technology, Hangzhou Dianzi University, Hangzhou 310018, China.

College of Materials and Environmental Engineering, Hangzhou Dianzi University, Hangzhou 310018, China.

出版信息

ACS Appl Mater Interfaces. 2024 Jan 17;16(2):2530-2538. doi: 10.1021/acsami.3c16303. Epub 2024 Jan 7.

Abstract

Dielectric ceramics with a high energy storage capacity are key to advanced pulsed power capacitors. However, conventional materials face a mutual constraint between polarization strength and the breakdown strength bottleneck. To address this limitation, the concept of nanograined high-entropy ceramics is introduced in this work. By introducing a large number of constituent elements into the A-site of perovskite material lattice, high-entropy (BiKBaSrCa)TiO-0.2 'CuO relaxor ceramic with nanoscale grains have been successfully prepared, which breaks the mutual constraint between polarization strength and breakdown strength bottleneck and results a recoverable energy density ( ∼ 6.86 J/cm) and an efficiency (η ∼ 87.7%) at 670 kV/cm. Moreover, its excellent stability makes it potentially useful under a variety of extreme conditions, including at high temperatures and high/low frequencies. These obtained results demonstrate that this nanograined high-entropy lead-free perovskite ceramic has great potential for energy storage applications.

摘要

具有高储能容量的介电陶瓷是先进脉冲功率电容器的关键。然而,传统材料面临极化强度和击穿强度瓶颈之间的相互制约。为了解决这一限制,本文引入了纳米晶高熵陶瓷的概念。通过在钙钛矿材料晶格的A位引入大量组成元素,成功制备了具有纳米级晶粒的高熵(BiKBaSrCa)TiO-0.2'CuO弛豫陶瓷,打破了极化强度和击穿强度瓶颈之间的相互制约,在670 kV/cm下实现了可恢复能量密度(约6.86 J/cm)和效率(η约87.7%)。此外,其优异的稳定性使其在包括高温和高/低频在内的各种极端条件下都具有潜在的应用价值。这些结果表明,这种纳米晶高熵无铅钙钛矿陶瓷在储能应用方面具有巨大潜力。

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