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Wet-chemical Synthesis of the Size-controlled BaTiO3 Nanoparticles for Embedded Capacitors

机译:嵌入式电容器尺寸控制的BATIO3纳米粒子的湿化学合成

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In this work, a simple two-step route has been developed to synthesize ultrafine barium titanate (BaTiO_3) with size ranging from 30 nm to 100nm by reacting barium hydroxide with tetrabutyl titanate in mixing solvent. This method facilitates the process-control and the property tailoring of the particles. The effect of 1,4-butylene glycol on hydrolysis rate of tetrabutyl titanate, temperature, solvent ratio between isopropanol and water, the particle size, the crystalline phase have been investigated. The prepared BaTiO_3 nanoparticles were characterized using X-ray diffraction and scanning electron microscopy (SEM). The results show that the particle size can be easily tuned by adjusting the ratio of 1,4-butylene glycol, isopropanol and water in solution. The dielectric behavior of the BaTiO_3/PVDF at low frequency show that the interfacial polarization acts as an important role for the high dielectric constant (ε_r).
机译:在这项工作中,已经开发了一种简单的两步路线,以通过使氢氧化钡与钛酸钡在混合溶剂中反应,合成尺寸范围为30nm至100nm的尺寸为30nm至100nm。 该方法有助于颗粒的过程控制和剪裁的属性。 研究了1,4-丁二醇对二丁基四丁酯,温度,异丙醇和水之间的溶剂比的水解率的影响,研究了粒度,粒径,结晶相。 使用X射线衍射和扫描电子显微镜(SEM)表征制备的BATIO_3纳米颗粒。 结果表明,通过调节1,4-丁二醇,异丙醇和水溶液中的溶液的比例,可以容易地调节粒径。 低频下BATIO_3 / PVDF的介电行为表明,界面偏振作用为高介电常数(ε_R)的重要作用。

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