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Mechanochemical Activation Assisted Synthesis of Bismuth Layered-Perovskite Bi_4Ti_4O_(12)

机译:机械化学活化辅助合成铋层状钙钛矿Bi_4Ti_4O_(12)

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摘要

A powder mixture of Bi_2O_3 and TiO_2_ both monoclinic, was mechanochemically treated in a planetary ball mill in air atmosphere for different time, using zirconium balls as the milling medium. Mechanochemical reaction leads to the gradual formation of an amorphous phase. After 1 h of milling the starting oxides were transformed fully a nanocrystalline Bi_4Ti_4O_(12) phase. With increasing the milling time from 3 to 12 h, the particle size of formed Bi_4Ti_3O_(12) did not reduced significantly. That was confirmed by IR and TEM analysis. The electron diffraction pattern indicates that Bi_4Ti_3O_(12) crystalline powder is embedded in an amorphous phase of bismuth titanate. Phase composition and atom ratio in BIT ceramics were determined by X-ray diffraction and EDS analysis. After milling for various times the powders were compacted by pressing and isothermal sintering. The dielectric permittivity of the sintered samples significantly depends on the milling time. Sample milled for 12 h and subsequently sintered at 1000 °Cfor 24 h exhibit a hysteresis loop, confirming that the synthesized material possesses ferroelectric properties.
机译:Bi_2O_3和TiO_2_均为单斜晶系粉末混合物,在行星式球磨机中在大气气氛中以锆球为研磨介质进行了机械化学处理不同的时间。机械化学反应导致非晶相的逐渐形成。研磨1小时后,将起始氧化物完全转化为纳米晶Bi_4Ti_4O_(12)相。随着研磨时间从3小时增加到12小时,形成的Bi_4Ti_3O_(12)的粒径没有显着降低。通过IR和TEM分析证实了这一点。电子衍射图表明Bi_4Ti_3O_(12)结晶粉末嵌入钛酸铋的非晶相中。通过X射线衍射和EDS分析确定BIT陶瓷中的相组成和原子比。研磨多次后,通过压制和等温烧结将粉末压实。烧结样品的介电常数极大地取决于研磨时间。研磨12小时并随后在1000°C烧结24小时的样品表现出磁滞回线,证实合成材料具有铁电特性。

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