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利用原子力显微镜实时监测从含硫酸钠或硫酸锂的水溶液中硼酸的晶体生长

Real-Time Crystal Growth Monitoring of Boric Acid from Sodium or Lithium Sulfate Containing Aqueous Solutions by Atomic Force Microscopy.

作者信息

Alavia Wilson, Seidel-Morgenstern Andreas, Hermsdorf Dana, Lorenz Heike, Graber Teófilo A

机构信息

Faculty of Engineering, Universidad Alberto Hurtado, Almirante Barroso 10, 8340575 Santiago, Chile.

Max Planck Institute for Dynamics of Complex Technical Systems Magdeburg, Sandtorstraße 1, D-39106 Magdeburg, Germany.

出版信息

ACS Omega. 2023 Mar 20;8(12):10822-10835. doi: 10.1021/acsomega.2c06953. eCollection 2023 Mar 28.

Abstract

The crystal growth of boric acid from an aqueous solution in the absence and presence of sodium and lithium sulfate was studied by real-time monitoring. For this purpose, atomic force microscopy in situ has been used. The results show that the growth mechanism of boric acid from its pure and impure solutions is spiral growth driven by screw dislocation and that the velocity of advancement of steps on the crystal surface, and the relative growth rate (ratio of the growth rate in presence and absence of a salt) is reduced in the presence of salts. The reduction of the relative growth rate could be explained by the inhibition of advancement of steps of the (001) face mainly in the growth direction [100] caused by the adsorption of salts on the actives sites and the inhibition of the formation of sources of steps such as dislocations. The adsorption of the salts on the crystal surface is anisotropic and independent of the supersaturation and preferentially on the active sites of the (100) edge. Moreover, this information is of significance for the improvement of the quality of boric acid recovered from brines and minerals and the synthesis of nanostructures and microstructures of boron-based materials.

摘要

通过实时监测研究了在不存在和存在硫酸钠及硫酸锂的情况下硼酸在水溶液中的晶体生长。为此,采用了原位原子力显微镜。结果表明,硼酸从其纯溶液和不纯溶液中的生长机制是由螺旋位错驱动的螺旋生长,并且在有盐存在的情况下,晶体表面台阶的推进速度以及相对生长速率(有盐和无盐时生长速率的比值)会降低。相对生长速率的降低可以解释为,盐吸附在活性位点上导致(001)面台阶主要在生长方向[100]上的推进受到抑制,以及位错等台阶源的形成受到抑制。盐在晶体表面的吸附是各向异性的,且与过饱和度无关,优先吸附在(100)棱边的活性位点上。此外,该信息对于提高从卤水和矿物中回收的硼酸质量以及硼基材料纳米结构和微观结构的合成具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ba6/10061539/79b69c3d89f5/ao2c06953_0002.jpg

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