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通过工程畴在透明菱面体PMN-PT单晶中实现优异的横向压电和电光效应的报道。

Reporting Excellent Transverse Piezoelectric and Electro-Optic Effects in Transparent Rhombohedral PMN-PT Single Crystal by Engineered Domains.

作者信息

Deng Chenguang, Ye Lianxu, He Chongjun, Xu Guisheng, Zhai Qinxiao, Luo Haosu, Liu Youwen, Bell Andrew J

机构信息

College of Science, Nanjing University of Aeronautics and Astronautics, 29 Jiangjun Road, Nanjing, 211106, China.

Key Laboratory of Space Photoelectric Detection and Perception in Ministry of Industry and Information Technology, College of Astronautics, Nanjing University of Aeronautics and Astronautics, 29 Jiangjun Road, Nanjing, 211106, China.

出版信息

Adv Mater. 2021 Oct;33(43):e2103013. doi: 10.1002/adma.202103013. Epub 2021 Sep 12.

Abstract

Transparent ferroelectric crystals with high piezoelectricity are challenging to build because of their complex structure and disordered domains in rhombohedral relaxor ferroelectrics. There are eight domains along the <111> direction, which cause light scattering. In this study, perfect transparency is achieved along the [110] and [001] directions in [110]-poled rhombohedral 0.72Pb(Mg Nb )O -0.28PbTiO (PMN-PT) crystals, which have a high d value of 1700 pC N and a high electro-optic coefficient γ of 320 pm V . This implies that the [110]-oriented rhombohedral PMN-0.28PT crystal can realize the mode of transverse modulation, whereas the [001]-oriented PMN-0.28PT crystal is more suitable for the longitudinal mode. Through piezoresponse force microscopy (PFM), it is confirmed that the [110]-poled rhombohedral PMN-PT crystals form 71° layered domains, which are similar to the 109° layered domains of the [001]-oriented transparent crystal. Combined with PFM and birefringence microscopy, the degradation of domains and thickness dependence of piezoelectricity provide clear evidence for the relationship between the engineered domain structures and piezoelectric properties, which should be considered in the design of piezoelectric or electro-optic devices with excellent performance. This work enriches the research on ferroelectric domain engineering for excellent transparency and high piezoelectricity to provide new ideas for photoacoustic devices.

摘要

具有高压电性的透明铁电晶体因其复杂的结构以及菱面体弛豫铁电体中无序的畴而难以制备。沿<111>方向存在八个畴,这会导致光散射。在本研究中,在[110]极化的菱面体0.72Pb(Mg Nb )O -0.28PbTiO (PMN-PT)晶体中,沿[110]和[001]方向实现了完美的透明度,其具有1700 pC N的高d值和320 pm V的高电光系数γ。这意味着[110]取向的菱面体PMN-0.28PT晶体可以实现横向调制模式,而[001]取向的PMN-0.28PT晶体更适合纵向模式。通过压电力显微镜(PFM)证实,[110]极化的菱面体PMN-PT晶体形成71°层状畴,这与[001]取向的透明晶体的109°层状畴相似。结合PFM和双折射显微镜,畴的退化和压电性的厚度依赖性为工程畴结构与压电性能之间的关系提供了明确的证据,这在设计具有优异性能的压电或电光器件时应予以考虑。这项工作丰富了关于具有优异透明度和高压电性的铁电畴工程的研究,为光声器件提供了新思路。

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