Wang Yong-Jyun, Lai Hung-Chi, Chen Yu-Ang, Huang Rong, Hsin Ti, Liu Heng-Jui, Zhu Ruixue, Gao Peng, Li Cong, Yu Pu, Chen Yi-Chun, Li Jiangyu, Chen Yi-Cheng, Yeh Jien-Wei, Chu Ying-Hao
Department of Materials Science and Engineering, National Tsing Hua University, Hsinchu, 30013, Taiwan.
Department of Materials Science and Engineering, National Yang Ming Chiao Tung University, Hsinchu, 30010, Taiwan.
Adv Mater. 2023 Nov;35(47):e2304128. doi: 10.1002/adma.202304128. Epub 2023 Oct 22.
A high configurational entropy, achieved through a proper design of compositions, can minimize the Gibbs free energy and stabilize the quasi-equilibrium phases in a solid-solution form. This leads to the development of high-entropy materials with unique structural characteristics and excellent performance, which otherwise could not be achieved through conventional pathways. This work develops a high-entropy nonlinear dielectric system, based on the expansion of lead magnesium niobate-lead titanate. A dense and uniform distribution of nano-polar regions is observed in the samples owing to the addition of Ba, Hf, and Zr ions, which lead to enhanced performance of nonlinear dielectrics. The fact that no structural phase transformation is detected up to 250 °C, and no noticeable change or a steep drop in structural and electrical characteristics is observed at high temperatures suggests a robust thermal stability of the dielectric systems developed. With these advantages, these materials hold vast potential for applications such as dielectric energy storage, dielectric tunability, and electrocaloric effect. Thus, this work offers a new high-entropy configuration with elemental modulation, with enhanced dielectric material features.
通过合理设计成分实现的高组态熵,可以使吉布斯自由能最小化,并以固溶体形式稳定准平衡相。这导致了具有独特结构特征和优异性能的高熵材料的发展,而这些材料通过传统途径是无法实现的。这项工作基于铌镁酸铅-钛酸铅的扩展,开发了一种高熵非线性介电系统。由于添加了钡、铪和锆离子,在样品中观察到纳米极性区域的致密且均匀分布,这导致非线性介电体的性能增强。在高达250°C的温度下未检测到结构相变,并且在高温下未观察到结构和电学特性有明显变化或急剧下降,这表明所开发的介电系统具有强大的热稳定性。具有这些优点,这些材料在介电能量存储、介电可调性和电热效应等应用方面具有巨大潜力。因此,这项工作提供了一种具有元素调制的新型高熵构型,增强了介电材料的特性。