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Gas phase condensation of superparamagnetic iron oxide-silica nanoparticles - control of the intraparticle phase distribution

机译:气相冷凝的超顺磁的铁oxide-silica纳米粒子——的控制权intraparticle阶段分布

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Spherical, softly agglomerated and superparamagnetic nanoparticles (NPs) consisting of maghemite (gamma-Fe2O3) and amorphous silica (SiO2) were prepared by CO2 laser co-vaporization (CoLAVA) of hematite powder (alpha-Fe2O3) and quartz sand (SiO2). The alpha-Fe2O3 portion of the homogeneous starting mixtures was gradually increased (15 mass%-95 mass%). It was found that (i) with increasing iron oxide content the NPs' morphology changes from a nanoscale SiO2 matrix with multiple gamma-Fe2O3 inclusions to Janus NPs consisting of a gamma-Fe2O3 and a SiO2 hemisphere to gamma-Fe2O3 NPs each carrying one small SiO2 lens on its surface, (ii) the multiple gamma-Fe2O3 inclusions accumulate at the NPs' inner surfaces, and (iii) all composite NPs are covered by a thin layer of amorphous SiO2. These morphological characteristics are attributed to (i) the phase segregation of iron oxide and silica within the condensed Fe2O3-SiO2 droplets, (ii) the temperature gradient within these droplets which arises during rapid cooling in the CoLAVA process, and (iii) the significantly lower surface energy of silica when compared to iron oxide. The proposed growth mechanism of these Fe2O3-SiO2 composite NPs during gas phase condensation can be transferred to other systems comprising a glass-network former and another component that is insoluble in the regarding glass. Thus, our model will facilitate the development of novel functional composite NPs for applications in biomedicine, optics, electronics, or catalysis.
机译:球,轻轻地凝聚和超顺磁的纳米颗粒(NPs)组成磁赤铁矿(gamma-Fe2O3)和非晶硅(二氧化硅)是由二氧化碳激光co-vaporization(CoLAVA)赤铁矿粉(alpha-Fe2O3)和石英砂(二氧化硅)。齐次混合物逐渐开始增加(15质量% -95质量%)。(我)增加氧化铁NPs的内容形态学的变化从一个纳米级二氧化硅矩阵Janus NPs与多个gamma-Fe2O3夹杂物gamma-Fe2O3和二氧化硅半球组成gamma-Fe2O3 NPs每个携带一个小型二氧化矽镜头表面,(2)多gamma-Fe2O3夹杂物积累NPs的内表面,和所有复合NPs (iii)覆盖了一层薄薄的无定形二氧化硅。是由于形态特征(我)氧化铁和相隔离硅在凝聚Fe2O3-SiO2滴,(2)内的温度梯度液滴快速冷却过程中产生的CoLAVA过程,(3)显著降低表面能的二氧化硅相比,铁氧化物。Fe2O3-SiO2复合NPs在气相冷凝可以转移到其他系统包括glass-network前和另一个组件不溶性有关玻璃。功能性复合NPs的新发展应用于生物医学、光学、电子、或催化。

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