首页> 外文期刊>Journal of optoelectronics and advanced materials >Tailoring of perovskite oxides nanopowders: particles size and morphology control to produce nanocrystalline dense ceramics
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Tailoring of perovskite oxides nanopowders: particles size and morphology control to produce nanocrystalline dense ceramics

机译:钙钛矿氧化物纳米粉的定制:控制粒径和形貌以生产纳米晶致密陶瓷

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摘要

The current trend in advanced ceramics is to realize grain size below a few hundred of nanometers. This aim can be attained if high quality nanopowders (approximate to 100 nm) with narrow particle size distribution are available for which also relatively low-temperature sintering is also required to reach high densification whilst preventing grain growth. An original and innovative approach in producing high quality perovskite non-agglomerated nanopowders, with a strict control of stoichiometry, narrow particle size distribution by soft chemistry methods is presented. Ultra-fine, non-agglomerated BaTiO3 and SrTiO3 nanopowders with sharp particle size distribution were prepared by direct precipitation of the relevant metal chlorides dissolved in a strong alkaline aqueous solution by considering the thermodynamic conditions stated for these aqueous syntheses. Since the preparation of nanopowders; is very sensible to the synthesis parameters, critical points such as nuclei formation, crystallite growth and aggregation of crystallites were strictly controlled. Particularly a strict control of supersaturation and temperature strongly reduces the heterogeneity conditions of the reactor and makes possible to control the cations concentration which determines the final particle size. We succeeded in tailoring BaTiO3 and SrTiO3 nanopowders; in the range 15 divided by 1500 nm, with a narrow particle size distribution and a high stoichiometry control.
机译:先进陶瓷的当前趋势是实现小于几百纳米的晶粒尺寸。如果可获得具有窄粒度分布的高质量纳米粉末(约100 nm),并且还需要相对低温的烧结以达到高致密化同时防止晶粒长大,则可以实现该目标。提出了一种创新的生产高质量钙钛矿非团聚纳米粉的创新方法,该方法通过化学化学方法严格控制化学计量,窄粒度分布。通过考虑溶解于强碱性水溶液中的相关热力学条件,直接沉淀溶解在强碱性水溶液中的相关金属氯化物,可以制备出具有细粒度分布的超细,无团聚的BaTiO3和SrTiO3纳米粉。自制备纳米粉以来;对合成参数非常敏感,严格控制了诸如成核,微晶生长和微晶聚集等临界点。特别是过饱和度和温度的严格控制会大大降低反应器的不均匀条件,并有可能控制决定最终粒径的阳离子浓度。我们成功定制了BaTiO3和SrTiO3纳米粉;在15除以1500nm的范围内,具有窄的粒度分布和高的化学计量比控制。

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