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The nucleation kinetics of ZnO nanoparticles from ZnCl2 in ethanol solutions

机译:氧化锌纳米粒子的成核动力学优化选取乙醇解决方案

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摘要

The first stages of the synthesis of ZnO nanoparticles by forced hydrolysis of ZnCl2 with NaOH and water in ethanol have been investigated using UV-Vis spectrophotometry. At sufficiently low water concentrations, focusing of the nanoparticle size distribution was observed during the nucleation and growth phase, followed by a defocusing phase when coarsening becomes significant. During nucleation and growth, only the smaller particles grow while the larger particles have an essentially zero growth rate, indicating that the growth rate decreases rapidly with particle size. As the average particle size remains nearly constant in this regime, the absorbance increase with time can be used to determine the nucleation rate. The nucleation rate was found to depend on both the water concentration and the reactant concentrations. The results are discussed in terms of a mechanism where water determines the precursor formation kinetics thus controlling the nucleation rate.
机译:氧化锌的合成的第一阶段纳米粒子的强迫水解优化选取氢氧化钠在乙醇和水的调查用紫外可见分光光度法。低水浓度,关注的观察纳米颗粒大小分布在成核和生长阶段,紧随其后当粗化的散焦阶段有很重要的意义。较小的粒子增长而大基本粒子有一个0的增长率,表明增长率迅速下降与粒子的大小。在这个政权仍然几乎不变,吸光度随时间可以用来增加决定了成核率。率被发现依赖于水浓度和反应物浓度。讨论的结果是一种机制水决定了前体形成动力学控制成核率。

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