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Synthesis of hexagonal Al2-xCrxO3 nanodisks by a thermal decomposition of mesoporous Cr4+: Al2O3 powders

机译:介孔Cr4 +:Al2O3粉末的热分解合成六角形Al2-xCrxO3纳米盘

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摘要

Monodispersed hexagonal Al2-xCrxO3 nanodisks are synthesized through a reactive doping of Cr6+ cations in a hydrogenated mesoporous AlO(OH)center dot alpha H2O powder followed by annealing at 1,200 degrees C in air. The reaction was carried out by a drop wise addition of an aqueous Cr6+ solution (0.5-1.0 M) to AlO(OH)center dot alpha H2O, at room temperature. Al2-xCrxO3 nanostructure formation was controlled by the nucleation and growth from the intermediate amorphous mesoporous Cr4+:Al2O3 composites in the temperature range 400-1,000 degrees C. The nanodisks of similar to 50 nm diameter and thickness of similar to 16 nm is observed in the sample with x of 0.2 and similar nanodisks with a low dimension is observed at a higher value of x of 1.6 (after 2 h of heating at 1,200 degrees C). The Cr3+ <-> Al3+ substitution, x <= 1.2, inhibits grain growth in small crystallites. The crystallites in x = 0.2 composition have 43 nm diameter while it is 15 nm in those with x = 1.2 composition.
机译:通过在氢化的介孔AlO(OH)中心点αH2O粉末中反应性掺杂Cr6 +阳离子,然后在空气中于1200℃退火,合成了单分散的六角形Al2-xCrxO3纳米盘。通过在室温下向AlO(OH)中心点αH2O滴加Cr6 +水溶液(0.5-1.0 M)进行反应。 Al2-xCrxO3纳米结构的形成受到在400-1,000摄氏度温度范围内中间无定形介孔Cr4 +:Al2O3复合材料的形核和生长的控制。在硅片中观察到直径约50 nm的纳米盘和厚度约16 nm的纳米盘。 x值为0.2的样品和尺寸较小的类似纳米盘在x值为1.6的较高值下观察到(在1,200℃加热2小时后)。 Cr 3+--Al 3+取代,x <= 1.2,抑制了小晶粒中的晶粒生长。 x = 0.2组成的微晶直径为43 nm,而x = 1.2组成的微晶直径为15 nm。

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