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Ink-jet printed BNT thin films with improved ferroelectric properties via annealing in wet air

机译:喷墨印刷BNT薄膜,通过在湿空气中通过退火改善铁电性能

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摘要

In this work, an ink-jet printing process based on the sol-gel route was applied to prepare lead-free ferroelectric Na(0.5)Bio(0.5)TiO(3)(BNT) thin films for the first time. Dense and crack -free films with perovskite structure were obtained from a modified precursor solution through multiple printing and pyrolysis processes. The ferroelectric, dielectric and electrical properties were significantly affected by the annealing temperature and atmosphere. The film annealed at 670 degrees C in wet air showed a high remnant polarization of 24.7 mu C/cm(2) with a low coercive field of 263 kV/cm, the dielectric constant and loss were 185 and 0.1 at 10 kHz, respectively. It was found that wet air was an alternative to reduce oxygen vacancies and enhance properties of ferroelectric films, which can be explained by the defect chemical reaction between water and oxygen vacancies. X-ray photoelectron spectroscopy(XPS) confirmed the decrease of oxygen vacancies after annealing with water presence, with a formation of Ohmic conduction mechanism dominated by charged hydroxyl groups.
机译:在这项工作中,应用基于溶胶 - 凝胶途径的喷墨印刷过程,首次施加基于溶胶 - 凝胶途径的喷墨加工,以制备无铅铁电Na(0.5)生物(0.5)TiO(0.5)薄膜的薄膜。通过多次印刷和热解过程从改性前体溶液获得浓密和裂缝的薄膜。通过退火温度和大气层显着影响铁电,电介质和电性能。在湿空气中在670℃下退火的薄膜显示出高温偏振24.7μc/ cm(2),具有263kV / cm的低矫顽方,介电常数和损失分别为185和0.1,分别为10kHz。发现湿空气是减少氧空位的替代方案,并增强铁电薄膜的性能,这可以通过水和氧空位之间的缺陷化学反应来解释。 X射线光电子体光谱(XPS)证实了用水存在退火后的氧空位的降低,形成由带电羟基支配的欧姆传导机构。

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