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X-ray, Raman and FTIRS studies of the micro structural evolution of zirconia particles caused by the thermal treatment

机译:X射线,拉曼和FTIRS研究热处理引起的氧化锆颗粒的微观结构演变

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Genesis of the structure of zirconia particles prepared by precipitation of amorphous hydrated zirconia by ammonia from the ZrO(NO3)(2) solution followed by a mild hydrothermal treatment (HTT) of precipitate, washing and calcination under air up to 1000 degrees C has been studied by X-ray diffraction (XRD), Raman and FTIRS. As revealed by FTIRS of lattice modes, the local structure of amorphous zirconia subjected to HTT is close to that in m-ZrO2. This helps to obtain nearly single-phase monoclinic nanozirconia (particle size 5-15 nm) already after a mild calcination at 500 degrees C. Stability of this phase with nanoparticles sizes below the critical value determined by thermodynamic constraints is due to its excessive hydroxylation demonstrated by FTIRS. Dehydroxilation and sintering of these nanoparticles at higher (600-650 degrees C) temperatures of calcination leads to reappearance of the (111) "cubic" reflection in XRD patterns. Modeling of XRD patterns revealed that this phenomenon could be explained by polysynthetic (001) twinning earlier observed by HRTEM. (c) 2006 Elsevier Inc. All rights reserved.
机译:生成氧化锆颗粒的结构的方法是,先用氨水从ZrO(NO3)(2)溶液中沉淀出无定形水合氧化锆,然后对其进行温和的水热处理(HTT),然后在高达1000摄氏度的空气中洗涤和煅烧。由X射线衍射(XRD),拉曼光谱和FTIRS研究。如晶格模式的FTIRS所揭示,经受HTT的非晶氧化锆的局部结构接近于m-ZrO 2中的局部结构。这有助于在500摄氏度的温和煅烧后获得几乎单相的单斜晶纳米氧化锆(粒径为5-15 nm)。具有低于由热力学约束条件确定的临界值的纳米颗粒的该相的稳定性是由于其过度的羟基化作用所证实的由FTIRS。这些纳米粒子在更高的煅烧温度(600-650摄氏度)下进行脱氢氧化和烧结,导致XRD模式中重新出现(111)“立方”反射。 XRD模式的建模表明,这种现象可以通过HRTEM之前观察到的多合成(001)孪晶来解释。 (c)2006 Elsevier Inc.保留所有权利。

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