NaOH 浓度对水热法制备的包晶钛酸铋钠的结构、形态、光学和电学特性的影响

Husam Nahedh, O. Salman, Mukhlis M Ismail
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摘要

水热法成功制备了无铅钛酸铋钠(NBT)包晶薄膜。利用 X 射线衍射和场发射扫描电子显微镜(FESEM)分别对制备的薄膜进行了结构和形貌研究。不同浓度的 NaOH 对所研究的特性有明显的影响。无杂质的 NBT 包晶石薄膜在 18 M 和 20 M 浓度下结晶良好,根据舍勒方程,结晶尺寸为 14 nm。此外,当改变 NaOH 的浓度时,通过 FESEM 图像的横截面可以获得相似的薄膜厚度。据观察,随着 NaOH 浓度的变化,所制备薄膜的光致发光光谱峰的强度也不同,这证实了氧空位浓度的变化。根据阿伦尼乌斯图推断出了所制备薄膜的活化能,因为用低浓度 NaOH 制备的薄膜的活化能值较小。结果表明,通过霍尔效应,NBT 薄膜的迁移率在 NaOH 浓度为 20 M 时达到最大值。
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Influence of NaOH Concentration on Structural, Morphological, Optical, and Electrical Characterization of Perovskite Sodium Bismuth Titanate Prepared by Hydrothermal Method.
The hydrothermal method successfully prepares a lead-free sodium bismuth titanate (NBT) perovskite film. The prepared films were studied structurally, and morphologically using X-ray diffraction, and field-emission scanning electron microscopy (FESEM), respectively. Varying the concentration of NaOH showed a noticeable effect on the properties studied. Good crystallization of NBT perovskite films without impurities was obtained at 18 and 20 M concentrations, where the crystalline size was 14 nm according to the Scherer equation. Also, when varying the concentration of NaOH, a similar film thickness was obtained through a cross-section of the FESEM images. It was observed that there was a difference in the intensity of the peaks of the photoluminescence spectra of the prepared films with a change in the concentration of NaOH, which confirms a change in the concentration of oxygen vacancies. The activation energy of the prepared films was deduced from the Arrhenius plot, as it showed small values in the films prepared with a low concentration of NaOH. The results showed that the maximum value of mobility of NBT films was at 20 M of NaOH concentration through the Hall Effect.
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