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A nearly pure monoclinic nanocrystalline zirconia

机译:几乎纯的单斜晶纳米氧化锆

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Generally, monoclinic zirconia is considered to be much more difficult to prepare at low temperatures and particularly in a pure state. The present work is the first example that shows that the hydrous zirconia formed by precipitation can yield a nearly pure nanocrystalline monoclinic zirconia at a temperature as low as 320 ° C. The crystallite size of the monoclinic zirconia produced in the present work is around 15nm, and it does not change appreciably as calcination temperature is increased from 320 to or above 400 ° C. Such a small monoclinic crystallite arises from some of the chemical and physical factors built into the solution-gelationxerogel process such as acidic preparation-pH, rapid precipitation, and moderate aging time and drying temperature, which result in a structure different from those of the existing zirconium hydroxides. In addition, the hydrous zirconia exhibits a unique thermal behavior in two respects: first, a sudden weight drop in the region of exothermic peak of the thermogravimetric curve is seen, suggesting that the main decomposition of the hydrous zirconia occurs in this region; second, there is an endothermic peak at high temperature in the differential thermal analysis curve, indicating the presence of coordinated water in the hydrous zirconia. © 2005 Elsevier Inc. All rights reserved.
机译:通常,单斜氧化锆被认为在低温下,尤其是在纯净状态下制备困难得多。目前的工作是第一个例子,表明通过沉淀形成的含水氧化锆可以在低至320°C的温度下产生近乎纯净的纳米晶单斜晶氧化锆。在本发明中生产的单斜晶氧化锆的微晶尺寸为15nm左右,并且随着煅烧温度从320℃升高至400℃以上而没有明显变化。 C.如此小的单斜晶微晶体是由溶液-凝胶化干凝胶过程中内置的一些化学和物理因素产生的,例如酸性制剂-pH,快速沉淀以及适度的老化时间和干燥温度,从而导致其结构不同于现有的氢氧化锆。此外,含水氧化锆在两个方面都表现出独特的热行为:首先,在热重曲线的放热峰区域内重量突然下降,表明含水氧化锆的主要分解发生在该区域。其次,在差热分析曲线中在高温下有一个吸热峰,表明在含水氧化锆中存在配位水。 &复制; 2005 Elsevier Inc.保留所有权利。

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