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Plasma dynamic synthesis of ultradispersed zinc oxide and sintering ceramics on its basis by SPS method

机译:SPS法在其基础上使用超分布氧化锌和烧结陶瓷的等离子体动态合成

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Zinc oxide is a well-known semiconductor material having good electrical, optical and catalytic properties. It can be used in different areas from cosmetics to drug delivery and biosensors. The synthesis of nanosized zinc oxide is an urgent task for obtaining ZnO-based ceramics with enhanced physical properties. This work shows the possibility to implement the plasma dynamic synthesis of zinc oxide in one short-term process (less than 1 ms) using an electrodischarge zinc-containing plasma jet, flowing into oxygen atmosphere. It allows synthesizing a mono-crystalline powder with particle size distribution from tens to hundred nanometers. The synthesized powdered product is investigated using by X-Ray diffractometry (XRD), scanning electron microscopy and high-resolution transmission electron microscopy. According to XRD, the obtained product consists of hexagonal zinc oxide with lattice parameters a = b = 3.24982 A, c = 5.20661 A that is clearly confirmed by microscopy data. This powder was used to produce a bulk ceramics sample on its basis by spark plasma sintering. The influence of sintering parameters on the structure of the resulting sample was studied. The optimal parameters were found which allows obtaining the more dense ceramics with a better microstructure. It was also found that the absence of exposure time after reaching the working temperature and pressure allows decreasing the porosity of ceramics.
机译:氧化锌是具有良好电气,光学和催化性能的众所周知的半导体材料。它可以在化妆品的不同区域中用于药物递送和生物传感器。纳米氧化锌的合成是用于获得具有增强物理性质的ZnO基陶瓷的迫切任务。该工作表明,使用电力放电锌的等离子体射流流入氧气气氛,在一个短期过程(小于1ms)中实施血浆动态合成氧化锌的可能性。它允许合成单晶粉末,其中粒度分布从数十到一百纳米。通过X射线衍射测定(XRD),扫描电子显微镜和高分辨率透射电子显微镜研究了合成的粉末产品。根据XRD,所得产物由六角形氧化物组成,晶格参数A = B = 3.24982a,C = 5.20661A,通过显微镜数据清晰地证实。该粉末用于通过火花等离子体烧结在其基础上产生散装陶瓷样品。研究了烧结参数对所得样品结构的影响。找到最佳参数,其允许获得更致密的陶瓷,具有更好的微观结构。还发现达到工作温度和压力后没有暴露时间,允许降低陶瓷的孔隙率。

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