4O(BO The Dielectric and Piezoelectric Properties of YCa<inf>4</inf>O(BO<inf>3</inf>)<inf>3</inf> Crystal Annealed in Critical Condition
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The Dielectric and Piezoelectric Properties of YCa4O(BO3)3 Crystal Annealed in Critical Condition

机译:临界条件下退火的YCa 4 O(BO 3 3 晶体的介电​​和压电特性

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The YCa4O(BO3)3 (YCOB) crystal is an attractive piezoelectric material for sensing at elevated temperatures. In this paper, the dielectric and piezoelectric properties of YCOB crystal annealed at high temperature of 1100°C and low atmosphere pressure of 2 Pa for 24 h were reported. Comparing to the pristine YCOB crystal, the relative dielectric permittivity (ε220) slightly increased after annealing, while the piezoelectric coefficient (d26) got decreased, with a variation of <;7%. The chemical bonding for the annealed YCOB was studied using X-ray photoelectron spectroscopy, from which the variations of binding energies of B, Ca, and Y decreased below 0.2 eV, indicating the stable electronic structure of YCOB crystal. The vacancy formation energies for Y, Ca, O, and B atoms in YCOB crystal were also analyzed via first principle calculations. The O atom was found to possess the lowest vacancy formation energy, thus easier to evaporate during critical annealing and easier to compensate than other atoms. The vacancy defects are believed to be the main factor dominant the variations of dielectric and piezoelectric properties.
机译:YCa 4 O(BO 3 3 (YCOB)晶体是一种有吸引力的压电材料,可在高温下进行感应。本文报道了在1100°C的高温和2Pa的低气压下退火24h的YCOB晶体的介电​​和压电性能。与原始的YCOB晶体相比,相对介电常数(ε 22 0 )退火后略有增加,而压电系数(d 26 )减少了,变化幅度<; 7%。使用X射线光电子能谱研究了退火的YCOB的化学键合,从中B,Ca和Y的结合能变化降至0.2 eV以下,表明YCOB晶体具有稳定的电子结构。通过第一性原理计算,还分析了YCOB晶体中Y,Ca,O和B原子的空位形成能。发现O原子具有最低的空位形成能,因此比其他原子更容易在关键退火期间蒸发并且更容易补偿。人们认为空位缺陷是决定介电和压电性能变化的主要因素。

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