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A multistep oriented attachment kinetics: Coarsening of ZnS nanoparticle in concentrated NaOH

机译:多步骤定向的附着动力学:浓氢氧化钠中ZnS纳米粒子的粗化

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Crystal growth of ZnS nanoparticles during hydrothermal coarsened in 4 M NaOH occurs via a two-stage process. In the first stage, the primary particles grow into a size over hundred times of the original volume. The initial growth rate can be fitted by an asymptotic curve. High-resolution transmission electron microscope (HRTEM) data indicate that in this stage, crystal growth mainly occurs via a multistep crystallographically specific oriented attachment (OA). The higher the coarsening temperature, the earlier the first stage ends. In the second stage, an abrupt transition from asymptotic to square parabola growth kinetics occurs. The crystal growth data can be fitted by a standard Ostwald ripening (OR) model consistent with growth controlled by dissolution/precipitation of ions in solution. HRTEM data indicate that a minor amount of OA-based growth also occurs in the early period of the second stage. A new multistep OA kinetics model analogous to the reaction between molecules was proposed to illustrate the asymptotic growth in the first stage of coarsening. The effect of concentrated NaOH was discussed and proved to be the key that hindered the OR process, attributing to the almost exclusive pure OA-based growth of ZnS particles in the first stage.
机译:在4 M NaOH中进行水热粗化过程中,ZnS纳米颗粒的晶体生长是通过两步过程进行的。在第一阶段,初级粒子的大小超过原始体积的一百倍。初始增长率可以通过渐近曲线拟合。高分辨率透射电子显微镜(HRTEM)数据表明,在此阶段,晶体生长主要通过多步晶体学特定取向的附着物(OA)发生。粗化温度越高,第一阶段结束的时间越早。在第二阶段,发生从渐近到方形抛物线生长动力学的突然转变。晶体生长数据可以通过标准的奥斯特瓦尔德熟化(OR)模型进行拟合,该模型与溶液中离子的溶解/沉淀所控制的生长相一致。 HRTEM数据表明,在第二阶段的早期也发生了少量的基于OA的生长。提出了类似于分子间反应的新的多步OA动力学模型,以说明粗化第一阶段的渐近生长。讨论了浓NaOH的作用,并证明它是阻碍OR过程的关键,这归因于第一阶段几乎完全基于OA的纯ZnS颗粒生长。

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