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The impact of nanocrystallite size and shape on phase transformation: Application to the boehmite/alumina transformation

机译:纳米微晶尺寸和形状对相变的影响:在勃姆石/氧化铝相变中的应用

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摘要

The thermal activation of oxyhydroxides is a key industrial process in preparing oxide materials. When dealing with nanoparticles, the phase transition properties are drastically modified. By preparing size- and shape-controlled boehmite nanoparticles, we demonstrate that the transformation temperature into γ-alumina is significantly altered. Rhombus crystallites were obtained from boehmite precipitated at basic pH, whereas crystallites precipitated at pH 4.5 were hexagonal. For the same crystallite size (ca. 4.5 nm), the transition temperature of the hexagonal crystallites was 315 °C whereas that of the rhombus ones was only 270 °C. A thermodynamic model was developed to rationalize these observations: the transition temperature results from a compromise between the crystallite size and the ratio of the lateral and basal surfaces. Consequently, the as-determined kinetic data could be a powerful tool for developing new efficient calcination processes and optimizing alumina properties.
机译:羟基氧化物的热活化是制备氧化物材料的关键工业过程。当处理纳米粒子时,其相变特性会大大改变。通过制备尺寸和形状可控的勃姆石纳米颗粒,我们证明了转变为γ-氧化铝的温度发生了显着变化。菱形微晶是从在碱性pH下沉淀的勃姆石中获得的,而在pH 4.5时沉淀的微晶是六角形的。对于相同的微晶尺寸(约4.5 nm),六角形微晶的转变温度为315°C,而菱形微晶的转变温度仅为270°C。开发了一个热力学模型来合理化这些观察结果:转变温度是由微晶尺寸与侧面和基面之比之间的折衷得出的。因此,确定的动力学数据可能是开发新型高效煅烧工艺和优化氧化铝性能的有力工具。

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