首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Origin of the abnormal reduction of the dielectric response for ReCOB crystals and its mechanism: theoretical and experimental exploration
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Origin of the abnormal reduction of the dielectric response for ReCOB crystals and its mechanism: theoretical and experimental exploration

机译:RECOB晶体的介电响应异常降低的起源及其机制:理论与实验探索

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The dielectric performance of ReCOB-type (Re: rare earth ions) crystals is vital for modulating their electro-elastic properties and improving the sensing capabilities of such high temperature piezoelectric sensors. It has been reported that the dielectric permittivity of ReCOB increases with increasing Re(3+)ion radius, whereas LaCOB exhibits an abnormal drop in the dielectric permittivity, which presents an obstacle to the optimization of the properties of ReCOB crystals. By using first-principle calculations and combining these with experiments, we found that both electronic hybridization and bond vibrations contribute to the dielectric permittivity of ReCOB. A significant decrease in dielectric permittivity for LaCOB can be attributed to the distinct reduction in the ionic displacement polarization. Charged antisite La(Ca)(+)defects play an important role in improving the dielectric properties of LaCOB by changing the polarization direction. This suggests that it would be useful to increase the concentration of La(Ca)antisite defects by partially replacing La(3+)with smaller ions, such as Y3+, Er3+, and Tm3+.
机译:Recob型(Re:稀土离子)晶体的介电​​性能对于调节其电弹性性能并提高这种高温压电传感器的感测能力至关重要。据报道,REFOB的介电常数随着RE(3​​+)离子半径的增加而增加,而LACOB在介电常数下表现出异常下降,这呈现了优化RECOB晶体的性质的障碍。通过使用第一原理计算并将这些与实验相结合,我们发现电子杂交和粘合振动都有助于RECOB的介电常数。 LA1B的介电常数显着降低可归因于离子位移极化的明显降低。带电的Arisite La(CA)(+)缺陷在通过改变偏振方向来改善LALOB的电介质特性方面发挥着重要作用。这表明通过部分替代La(3+)具有较小的离子,例如Y3 +,ER3 +和TM3 +,增加La(Ca)抗体缺陷的浓度是有用的。

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