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以高度分散的AlO为晶种通过强化从铝酸钠溶液中沉淀三水铝石制备近球形α-AlO颗粒

Preparation of Near-Spherical α-AlO Particles by Enhanced Precipitation of Gibbsite from Sodium Aluminate Solution Using Highly Dispersed AlO as Seeds.

作者信息

Zhang Jie, Xu Shanguang, Han Xin, Chai Ruiying, Zhang Fan, Tian Sisi, Fan Haiying, Du Shanguo

机构信息

School of Chemistry and Chemical Engineering, Shandong University, Jinan, Shandong 250100, China.

National Engineering Research Center for Colloidal Materials, School of Chemistry and Chemical Engineering, Shandong University, Jinan, Shandong 250100, China.

出版信息

Inorg Chem. 2024 Oct 21;63(42):19744-19751. doi: 10.1021/acs.inorgchem.4c02970. Epub 2024 Oct 8.

Abstract

The near-spherical α-AlO particles (∼200 nm) were prepared for the first time through the precipitation of gibbsite from a supersaturated sodium aluminate solution, with the addition of an acidic solution containing highly dispersed nanosized AlO seeds. The near-spherical α-AlO were achieved by employing seeds at 1100 °C, with the initial nucleation temperature being only 900 °C, due to the highly homogeneous dispersion of the seeds into gibbsite formation by in situ growth that can effectively enhance the role of the seeds in the phase transition. Moreover, the precipitation rate of sodium aluminate solution was significantly accelerated by 17-fold. This acceleration was due to the slightly acidic solution breaking the stability of sodium aluminate solution through a neutralization reaction on the seed surface, leading to the rapid formation of gibbsite nuclei on the seed surface. Our findings provide a feasible approach for the fabrication of well-dispersed α-AlO particles and make the industrial production of well-dispersed α-AlO from sodium aluminate solution a commercial reality.

摘要

首次通过从过饱和铝酸钠溶液中沉淀三水铝石,并添加含有高度分散的纳米级氧化铝籽晶的酸性溶液,制备出了近似球形的α-AlO颗粒(约200纳米)。通过在1100℃下使用籽晶实现了近似球形的α-AlO的制备,由于籽晶通过原位生长高度均匀地分散到三水铝石形成过程中,能够有效增强籽晶在相变中的作用,初始成核温度仅为900℃。此外,铝酸钠溶液的沉淀速率显著加快了17倍。这种加速是由于微酸性溶液通过在籽晶表面的中和反应破坏了铝酸钠溶液的稳定性,导致在籽晶表面迅速形成三水铝石晶核。我们的研究结果为制备分散良好的α-AlO颗粒提供了一种可行的方法,并使从铝酸钠溶液中工业生产分散良好的α-AlO成为商业现实。

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