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Nano-domains in lead-free piezoceramics: a review

机译:纳米域在无铅压电陶瓷中:综述

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Reducing or even prohibiting the use of toxic lead in electronic devices has become one of the most cutting-edge topics in various disciplines. The recently proposed phase boundary engineering endows lead-free piezoceramics with comparable performances to that of some lead-based piezoceramics. However, the enhancement in performance hinges on the coexistence of multi-phases and complex domain structures, particularly the occurrence of nano-domains and polar nanoregions (PNRs). Although nano-domains have been significantly studied in lead-based piezoceramics, understanding the nano-domains and PNRs in lead-free piezoceramics is in its infancy and needs a systematic summary and in-depth analysis. Herein, we summarize the nano-domains and PNRs in three representative lead-free piezoceramics (i.e., potassium sodium niobate, barium titanate, and sodium bismuth titanate), focusing on their effects on macro performance. First, we introduce the foundation and tools for the observation of the domains. Then, we summarize the variations in the nano-domains with phase structure, electric field, and temperature, and their effects on performance including piezoelectricity, strain, temperature stability, aging, and fatigue. Finally, we present our perspectives on the future of nano-domains, concentrating on nano-domain engineering. Therefore, this review can help better understand the nano-domains and PNRs in lead-free piezoceramics, and be used for the further development of high-performance lead-free piezoceramics.
机译:减少甚至禁止在电子设备中使用有毒导线已成为各学科最前沿的主题之一。最近提出的阶段边界工程赋予无铅压电陶瓷,其具有与一些铅基压电陶瓷的性能相当的性能。然而,在多相和复杂结构域结构的共存中的性能铰链的增强,特别是纳米域的发生和极性纳米导致(PNRS)。虽然纳米结构域在铅基压电陶瓷中得到了显着的研究,但了解纳米域和PNR在无铅压电陶瓷中是其婴儿期,需要系统概要和深入分析。在此,我们总结了三种代表性无铅压陶瓷(即铌酸钾,钛酸钾,钛酸钡)中的纳米域和PNRs,重点是它们对宏观性能的影响。首先,我们介绍了观察域的基础和工具。然后,我们总结了相位结构,电场和温度的纳米结构域的变化,以及它们对包括压电性,应变,温度稳定性,老化和疲劳的性能的影响。最后,我们介绍了我们对纳米域的未来的观点,集中在纳米域工程上。因此,本综述可以有助于更好地了解无铅压电陶瓷中的纳米域和PNR,并用于进一步发展高性能无铅压电陶瓷。

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