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A unique growth mechanism of donut-shaped Mg-Al layered double hydroxides crystals revealed by AFM and STEM-EDX

机译:AFM和STEM-EDX揭示的甜甜圈形Mg-Al层状双氢氧化物晶体的独特生长机理

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摘要

Donut-like crystals of Mg-Al layered double hydroxides (LDH) are synthesized using a hydrothermal method with microwave heating. This morphology provides enlargement of the specific surface area of the {h k 0} faces, needed for adsorption application. The growth mechanism for donut-shaped crystals is proposed on the basis of AFM and STEM-EDX images. The nucleation of Mg-Al LDH starts on the amorphous surface of spherical MgO particles, which have a much lower solubility compared to the aluminum trihydroxides at the synthesis pH (~11). The outgrowing nucleus provides re-entrant corners on both sides. These are preferential sites for the addition of new growth units, allowing lateral growth of the LDH crystal encircling the MgO particles. The dissolving MgO provides the supersaturation needed for growth and once it is depleted, a donut-like structure remains.
机译:Mg-Al层状双氢氧化物(LDH)的甜甜圈状晶体是使用微波加热的水热法合成的。这种形态提供了吸附应用所需的{h k 0}面的比表面积的增大。基于AFM和STEM-EDX图像,提出了甜甜圈形晶体的生长机理。 Mg-Al LDH的成核始于球形MgO颗粒的非晶态表面,与在合成pH值(〜11)下的氢氧化铝相比,其溶解度要低得多。向外生长的核在两侧都提供了凹角。这些是添加新生长单元的优先位置,允许围绕MgO颗粒的LDH晶体横向生长。溶解的MgO提供了生长所需的过饱和度,一旦耗尽,就会形成甜甜圈状的结构。

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