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Dielectric Relaxation Phenomena in Some Lead and Non-lead Based Ferroelectric Relaxor Materials: Recent Advances

机译:某些含铅和无铅铁电弛豫材料的介电弛豫现象:最新进展

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摘要

Relaxors with general formula AA'BB'O_3 with different cationic distributions at A/B-sites have important device applications in capacitors, piezoelectric ultrasonic transducers, electrostrictive actuators, SAW substrates, etc. The doping or compositional changes in these ceramics can control the high electromechanical characteristics. Lead zirconate titanates (PZT) - based solid solutions exhibit excellent electrochemical properties and are widely used as actuators, transducers, ceramic filters, resonators, sensors and other electronic devices, due to their excellent piezoelectric properties. Although, there has been a concerted effort to develop lead-free piezoelectric ceramics, no effective alternative to PZT has yet been found; most other materials that possess high dielectric and piezoelectric coefficients still contain lead ions. Dielectric relaxation in these materials is of fundamental importance. Recently, new relaxor ferroelectric materials (Pb(B'_(1/3)Nb_(2/3))0_3 types) have been reported by our group in which the dielectric relaxation character is different from that observed in typical lead based relaxors. In the first part of the review, relaxor characteristics, strategies to synthesize phase pure lead based relaxors and dielectric relaxation phenomena are presented. Deviation of the frequency dependent susceptibility from Curie-Weiss law is analysed both in terms of Gaussian and Lorentzian formalisms. Lead based ferroelectric relaxor materials, due to environmental, health and social reasons are not preferred in devices and attempts are being made to eliminate the lead content from these materials. Sodium bismuth titanate (Na_(0.5)Bi_(0.5)TiO_3, abbreviated as NBT), is considered to be one of the excellent candidates for lead-free piezoelectric material. However, pure NBT piezoelectric ceramics are difficult to pole due to its relatively large coercive field and high electrical conductivity. Therefore, many solid solutions of NBT with other ceramics are proposed to improve the relevant properties. In the second part of the review, relaxor behaviour of newly developed solid solutions of NBT is discussed. Finally, the future scope of research on these advance materials is presented.
机译:在A / B位置具有不同阳离子分布的通式AA'BB'O_3的弛豫剂在电容器,压电超声换能器,电致伸缩致动器,声表面波衬底等中具有重要的器件应用。这些陶瓷中的掺杂或成分变化可以控制高机电特性。锆酸钛酸铅(PZT)基固溶体具有出色的电化学性能,由于其出色的压电性能而被广泛用作致动器,传感器,陶瓷滤波器,谐振器,传感器和其他电子设备。尽管已经为开发无铅压电陶瓷做出了共同努力,但尚未找到有效替代PZT的替代方法。具有高介电常数和压电系数的大多数其他材料仍包含铅离子。这些材料中的介电弛豫至关重要。最近,我们的小组报告了新型弛豫铁电材料(Pb(B'_(1/3)Nb_(2/3))0_3类型),其介电弛豫特性不同于典型的铅基弛豫器。在本综述的第一部分中,提出了弛豫器特性,合成相纯铅基弛豫器的策略以及介电弛豫现象。根据高斯和洛伦兹形式主义分析了频率依赖性磁化率与居里-魏斯定律的偏差。由于环境,健康和社会原因,基于铅的铁电弛豫材料在装置中不是优选的,并且正在尝试从这些材料中消除铅含量。钛酸铋钠(Na_(0.5)Bi_(0.5)TiO_3,缩写为NBT)被认为是无铅压电材料的极佳候选材料之一。但是,纯NBT压电陶瓷由于其相对较大的矫顽场和高电导率而难以极化。因此,提出了许多NBT与其他陶瓷的固溶体以改善相关性能。在本综述的第二部分中,讨论了新开发的NBT固溶体的弛豫行为。最后,介绍了这些高级材料的未来研究范围。

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