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Tailoring size of BaTiO3 nanocrystals via ambient conditions sol process

机译:溶胶法制备BaTiO3 纳米晶的尺寸

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摘要

As the miniaturization of electronic devices continues to demand smaller and uniform particle size of the powders, size control of the powder becomes critical. Under carefully controlled experimental conditions, nanocrystalline BaTiO3 particles have been prepared by ambient condition sol process. Soluble precursors of barium and titanium in water have been used to produce a mixed metallic gel using KOH as the mineralizer. The gel was peptized and crystallized in water under refluxing condition. The effect of various experimental parameters such as the starting Ba/Ti ratio, temperature, time, and additives on the size of the crystallites have been investigated. A higher Ba/Ti ratio in the precursor solution led to smaller crystallite sizes of BaTiO3 particles. A higher temperature of refluxing had a positive effect of producing smaller crystallites, as well as particle sizes of the resulting powder. Using a polymeric surface modifier during BaTiO3 synthesis led to a smaller particle size and increased re-dispersibility of the particles in water. The duration of refluxing was determined to have a minimal effect on the resulting particle size. The powders have been characterized by X-ray diffractometry for phase purity, and by dynamic light scattering for particle size. Field emission scanning electron microscopy and transmission electron microscopy have been utilized to examine the morphology of the particles.
机译:随着电子设备的小型化继续要求粉末的更小和均匀的粒径,粉末的粒径控制变得至关重要。在严格控制的实验条件下,通过环境溶胶法制备了纳米晶BaTiO3 颗粒。钡和钛在水中的可溶性前体已被用于生产混合的金属凝胶,使用KOH作为矿化剂。将该凝胶胶凝并在回流条件下在水中结晶。研究了各种实验参数,例如起始Ba / Ti比,温度,时间和添加剂对微晶尺寸的影响。前驱体溶液中较高的Ba / Ti比导致BaTiO3 颗粒的晶粒尺寸减小。较高的回流温度具有产生较小的微晶以及所得粉末的粒径的积极作用。在BaTiO3 合成过程中使用聚合物表面改性剂可以减小粒径,并提高颗粒在水中的再分散性。确定回流的持续时间对所得的粒度影响最小。通过X射线衍射法测定粉末的相纯度,并通过动态光散射测定粒径。场发射扫描电子显微镜和透射电子显微镜已用于检查颗粒的形态。

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