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Nearly full-dense and fine-grained AZO:Y ceramics sintered from the corresponding nanoparticles

机译:由相应的纳米粒子烧结而成的近全密和细粒度的AZO:Y陶瓷

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摘要

Aluminum-doped zinc oxide ceramics with yttria doping (AZO:Y) ranging from 0 to 0.2 wt.% were fabricated by pressureless sintering yttria-modified nanoparticles in air at 1,300°C. Scanning electron microscopy, energy-dispersive X-ray spectroscopy, X-ray diffraction analysis, a physical property measurement system, and a densimeter were employed to characterize the precursor nanoparticles and the sintered AZO ceramics. It was shown that a small amount of yttria doping can remarkably retard the growth of the as-received precursor nanoparticles, further improve the microstructure, refine the grain size, and enhance the density for the sintered ceramic. Increasing the yttria doping to 0.2 wt.%, the AZO:Y nanoparticles synthetized by a coprecipitation process have a nearly sphere-shaped morphology and a mean particle diameter of 15.1 nm. Using the same amount of yttria, a fully dense AZO ceramic (99.98% of theoretical density) with a grain size of 2.2 μm and a bulk resistivity of 4.6 × 10−3 Ω·cm can be achieved. This kind of AZO:Y ceramic has a potential to be used as a high-quality sputtering target to deposit ZnO-based transparent conductive films with better optical and electrical properties.
机译:通过在1300℃的空气中对氧化钇改性的纳米粒子进行无压烧结来制造氧化钇掺杂(AZO:Y)为0至0.2重量%的铝掺杂氧化锌陶瓷。扫描电子显微镜,能量色散X射线光谱法,X射线衍射分析,物理性能测量系统和密度计被用来表征前驱体纳米颗粒和烧结的AZO陶瓷。结果表明,少量的氧化钇掺杂可以显着地阻碍原样纳米颗粒的生长,进一步改善微观结构,细化晶粒尺寸,并提高烧结陶瓷的密度。通过将氧化钇掺杂增加到0.2 wt。%,通过共沉淀过程合成的AZO:Y纳米颗粒具有接近球形的形态,平均粒径为15.1 nm。使用相同的氧化钇量,可以得到粒度为2.2μm,体电阻率为4.6×10 -3 Ω·cm的完全致密的AZO陶瓷(理论密度的99.98%)。这种AZO:Y陶瓷有潜力用作高质量溅射靶,以沉积具有更好光学和电学性质的ZnO基透明导电膜。

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