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铌酸锂晶体的结晶技术及其应用的最新进展。

State of the Art in Crystallization of LiNbO and Their Applications.

机构信息

State Key Laboratory of Crystal Materials, Institute of Crystal Materials, Shandong University, Jinan 250100, China.

Sino French Institute of Nuclear Engineering and Technology, Sun Yat-sen University, Zhuhai 519082, China.

出版信息

Molecules. 2021 Nov 22;26(22):7044. doi: 10.3390/molecules26227044.

Abstract

Lithium niobate (LiNbO) crystals are important dielectric and ferroelectric materials, which are widely used in acoustics, optic, and optoelectrical devices. The physical and chemical properties of LiNbO are dependent on microstructures, defects, compositions, and dimensions. In this review, we first discussed the crystal and defect structures of LiNbO, then the crystallization of LiNbO single crystal, and the measuring methods of Li content were introduced to reveal reason of growing congruent LiNbO and variable Li/Nb ratios. Afterwards, this review provides a summary about traditional and non-traditional applications of LiNbO crystals. The development of rare earth doped LiNbO used in illumination, and fluorescence temperature sensing was reviewed. In addition to radio-frequency applications, surface acoustic wave devices applied in high temperature sensor and solid-state physics were discussed. Thanks to its properties of spontaneous ferroelectric polarization, and high chemical stability, LiNbO crystals showed enhanced performances in photoelectric detection, electrocatalysis, and battery. Furthermore, domain engineering, memristors, sensors, and harvesters with the use of LiNbO crystals were formulated. The review is concluded with an outlook of challenges and potential payoff for finding novel LiNbO applications.

摘要

铌酸锂(LiNbO)晶体是重要的介电和铁电材料,广泛应用于声学、光学和光电设备。LiNbO 的物理和化学性质取决于其微观结构、缺陷、组成和尺寸。在这篇综述中,我们首先讨论了 LiNbO 的晶体和缺陷结构,然后介绍了 LiNbO 单晶的结晶以及 Li 含量的测量方法,以揭示生长等摩尔 LiNbO 和可变 Li/Nb 比的原因。之后,本文总结了 LiNbO 晶体的传统和非传统应用。综述了用于照明和荧光温度传感的稀土掺杂 LiNbO 的发展。除了射频应用外,还讨论了应用于高温传感器和固态物理的声表面波器件。由于具有自发铁电极化和高化学稳定性的特性,LiNbO 晶体在光电探测、电催化和电池等方面表现出了增强的性能。此外,利用 LiNbO 晶体的畴工程、忆阻器、传感器和能量收集器也被提出来。本文以对寻找新型 LiNbO 应用的挑战和潜在收益的展望作为结尾。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61bd/8617696/bab76a25bb18/molecules-26-07044-g001.jpg

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