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>Direct synthesis of barium zirconate titanate (BZT) nanoparticles at room temperature and sintering of their ceramics at low temperature
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Direct synthesis of barium zirconate titanate (BZT) nanoparticles at room temperature and sintering of their ceramics at low temperature
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机译:室温直接合成钛酸锆钛酸钡(BZT)纳米粒子,并在低温下烧结其陶瓷
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摘要
Using tetrabutyl titanate, zirconium nitrate and barium octahydrate as the raw materials, BZT nanoparticles with a grain size of ~10 nm were directly synthesized at room temperature. With low energy consumption and without any contamination produce, the synthesis process is green, environmental-friendly, convenient and efficient. The graingrowth of the as-prepared nanoparticles annealed at different temperatures was checked, and a rapid graingrowth starting at 600 C was observed. The sintering characteristics were also studied and it was found that an adapted sintering aid was very important for the sintering of the BZT nanoparticles at low temperature. Here, adding the useful active liquid of Bi2O3-Li2O as the sintering aid results in obtaining the dense BZT ceramics with the relative density of 96% even sintering at the temperature as low as 900 C for 2 h.
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机译:以钛酸四丁酯,硝酸锆和八水合钡为原料,室温下直接合成粒径约为10 nm的BZT纳米粒子。合成工艺能耗低,无任何污染,绿色,环保,方便,高效。检查在不同温度下退火的所制备的纳米颗粒的晶粒长大,并且观察到从600℃开始的快速晶粒长大。还研究了烧结特性,发现适合的烧结助剂对于低温下BZT纳米粒子的烧结非常重要。在此,添加有用的Bi 2 O 3 -Li 2 O活性液体作为烧结助剂,即使在低至900℃的温度下烧结2小时,也可获得相对密度为96%的致密BZT陶瓷。
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