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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Radiation-induced formation of Co3O4 nanoparticles from Co2+(aq): probing the kinetics using radical scavengers
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Radiation-induced formation of Co3O4 nanoparticles from Co2+(aq): probing the kinetics using radical scavengers

机译:辐射诱导从Co2 +(aq)形成Co3O4纳米颗粒:使用自由基清除剂探究动力学

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摘要

The effects of the Co2+ content and different radical scavengers on the kinetics of g-radiation-induced Co3O4 nanoparticle formation and growth were investigated. There are four distinct stages of particle formation with different oxidation rates. Scavengers and [Co2+](0) affect the oxidation kinetics in the different stages and consequently the final size of the particles formed. Radiolysis model calculations were performed to obtain the time-evolution of the concentrations of key oxidants and reductants, and the effect of scavengers on those concentrations. Based on the model results and experimental data a reaction mechanism for Co3O4 particle formation by gamma-irradiation of solutions containing Co2+(aq) is proposed. The main cobalt oxidation reaction changes with time. Oxidation of Co2+(aq) to Co3+(aq) by radiolytically produced (OH)-O-center dot occurs first in the solution phase. This is followed by spontaneous co-precipitation of mixed Co-II/Co-III hydroxide nucleate particles. Adsorption of Co-II(ad) followed by surface oxidation of Co-II(ad) to CoOOH(ad) by H2O2 grows particles with a solid CoOOH(s) phase. In parallel, the solid-state transformation of CoOOH(s) and Co-II(ad) to form Co3O4(s) occurs.
机译:研究了Co2 +含量和不同的自由基清除剂对g辐射诱导的Co3O4纳米粒子形成和生长动力学的影响。有四个不同的氧化速率不同的颗粒形成阶段。清除剂和[Co2 +](0)影响不同阶段的氧化动力学,因此影响所形成颗粒的最终尺寸。进行了辐射分解模型计算以获得关键氧化剂和还原剂浓度的时间演化以及清除剂对那些浓度的影响。根据模型结果和实验数据,提出了通过γ辐照含Co2 +(aq)的溶液形成Co3O4颗粒的反应机理。主要的钴氧化反应随时间变化。辐射产生的(OH)-O-中心点将Co2 +(aq)氧化为Co3 +(aq)在溶液相中首先发生。随后是混合的Co-II / Co-III氢氧化物成核颗粒自发共沉淀。 Co-II(ad)的吸附,然后由H2O2将Co-II(ad)表面氧化为CoOOH(ad),会生成具有固态CoOOH(s)相的颗粒。平行地,发生CoOOH和Co-II(ad)的固态转变以形成Co 3 O 4。

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