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首页> 外文期刊>Journal of Materials Science >Effect of synthesis methods for mesoporous zirconia on its structural and textural properties
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Effect of synthesis methods for mesoporous zirconia on its structural and textural properties

机译:介孔氧化锆合成方法对其结构和组织性能的影响

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摘要

Zirconia was synthesized by sol-gel and post-hydrothermal treatment under autogenous pressure in order to study the effect of synthesis methods on its structural and textural properties. On the basis of thermal analysis, in situ X-ray diffraction and Raman spectroscopy techniques, the synthesis processes exhibit similar thermal behavior and zirconia phase transformation. The effect of in situ calcination temperature on the crystallization behavior, crystal phase transition, and crystallite size analysis was studied. The results obtained revealed that amorphous zirconia transformed into tetragonal phase above 400 C and thermally stabilized up to 700 C. A biphasic mixture of tetragonal and monoclinic zirconia was formed at 750 C. Activation energy of sintering due to grain growth mechanism predicted that the zirconia phase transformation is due to the increase in the crystallite size of tetragonal phase above its critical size. The post-hydrothermal treatment resulted in the formation of high surface area mesoporous zirconia (213 m~2 g ~(-1)). Upon increasing the calcination temperature, a pronounced decrease in the specific surface area of zirconia samples due to sintering process and phase transformation.
机译:为了研究合成方法对其结构和织构性质的影响,通过溶胶-凝胶法和水热处理后在自生压力下合成了氧化锆。在热分析,原位X射线衍射和拉曼光谱技术的基础上,合成过程表现出相似的热行为和氧化锆相变。研究了原位煅烧温度对结晶行为,晶体相变和晶粒尺寸分析的影响。结果表明,非晶态氧化锆在400°C以上转变为四方相,并在700°C时热稳定。在750°C时形成四方和单斜晶氧化锆的双相混合物。由于晶粒长大机理而产生的烧结活化能预示了氧化锆相相变是由于四方相的微晶尺寸增加到其临界尺寸以上。经过水热处理后,形成了高表面积的介孔氧化锆(213 m〜2 g〜(-1))。在提高煅烧温度时,由于烧结过程和相变,氧化锆样品的比表面积显着降低。

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