Tian Shiwei, Jiang Chao, Chen Feifei, Yu Fapeng, Li Yanlu, Cheng Xiufeng, Wang Zhengping, Zhao Xian
State Key Laboratory of Crystal Materials, Center for Optics Research and Engineering of Shandong University Jinan 250100 P. R. China
RSC Adv. 2020 Jun 8;10(37):21754-21759. doi: 10.1039/d0ra02769c.
The trigonal lithium niobate crystal (LiNbO, LN) is a multi-functional material that possesses excellent nonlinear optical, pyroelectric and piezoelectric properties. In this work, the irradiation damage mechanism and stability of the electro-elastic properties of LN crystals irradiated with different doses (10-10 ions per cm) of 6 MeV Xe ions were evaluated for potential piezoelectric applications under irradiation conditions below 650 °C. The vacancy formation energies for Li, O, and Nb atoms are much lower than the irradiation energy of 6 MeV, with the lowest vacancy formation energy being obtained for Li, so that a high concentration of vacancies will be generated in LN upon irradiation. The vacancies narrow the band gap and decrease the electrical resistivity after irradiation. In contrast to the electrical resistivity, the relative dielectric permittivity of the LN crystal was found to increase with increasing irradiation dose, due to the weakened chemical bonds and distorted crystal structure, as confirmed by X-ray photoelectron spectroscopy. Despite the irradiation, the effective piezoelectric coefficients of bulk LN crystal remain nearly unchanged, indicating the favorable properties of LN for use under irradiation conditions at temperatures up to 650 °C.
三角锂铌酸盐晶体(LiNbO₃,LN)是一种多功能材料,具有优异的非线性光学、热电和压电性能。在本工作中,评估了在650℃以下辐照条件下,不同剂量(每平方厘米10¹⁰个离子)的6 MeV Xe离子辐照的LN晶体的辐照损伤机制和电弹性性能的稳定性,以用于潜在的压电应用。Li、O和Nb原子的空位形成能远低于6 MeV的辐照能量,其中Li的空位形成能最低,因此辐照时LN中会产生高浓度的空位。这些空位会使带隙变窄并降低辐照后的电阻率。与电阻率相反,发现LN晶体的相对介电常数随辐照剂量的增加而增加,这是由于化学键减弱和晶体结构畸变,X射线光电子能谱证实了这一点。尽管受到辐照,但块状LN晶体的有效压电系数几乎保持不变,这表明LN在高达650℃的辐照条件下使用具有良好的性能。