State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing, Beijing 100083, China.
Dalton Trans. 2012 Jun 21;41(23):7127-33. doi: 10.1039/c2dt30114h. Epub 2012 May 8.
Single crystalline β-SiAlON (z = 1.0) nanowhiskers with uniform morphology were prepared using a reaction sintering method at 1773 K for 6 h under flowing nitrogen atmosphere. The as-synthesized whiskers were well-crystallized with about 100-200 nm in diameter and a few hundred microns in length. According to the thermodynamic calculation, Al(g) and SiO(g) are important intermediate reactants to synthesize β-SiAlON whiskers. In the experiment, the two phases was controlled by changing the flow rate of nitrogen to make β-SiAlON whiskers grow in a stable way. The formation of β-SiAlON whiskers occurred through a vapor-solid (VS) mechanism. SiAlON was found to grow as a single crystal whisker from the (10 ̅10) plane of the granule. Furthermore, an enhanced oxidation resistance for β-SiAlON whiskers at high temperature was also observed using the thermogravimetry method (TG), demonstrating that β-SiAlON whiskers with uniform morphology is a promising candidate as a reinforcing agent in composite.
采用反应烧结法,在 1773 K 下、氮气气氛中保温 6 h,成功制备出形貌均匀的单相β-SiAlON(z = 1.0)纳米线。所合成的纳米线结晶度良好,直径约为 100-200nm,长度为数百微米。根据热力学计算,Al(g)和 SiO(g)是合成β-SiAlON 纳米线的重要中间反应物。在实验中,通过改变氮气的流速来控制这两个相,使β-SiAlON 纳米线以稳定的方式生长。β-SiAlON 纳米线的形成是通过气-固(VS)机制进行的。研究发现,β-SiAlON 纳米线从颗粒的(10 ̅10)面以单晶形式生长。此外,通过热重法(TG)还观察到β-SiAlON 纳米线在高温下具有增强的抗氧化性,这表明具有均匀形态的β-SiAlON 纳米线是作为复合材料增强剂的有前途的候选材料。