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首页> 外文期刊>Journal of Colloid and Interface Science >Formation of hematite nanoparticle monolayers of controlled coverage and structure at polymeric microparticles
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Formation of hematite nanoparticle monolayers of controlled coverage and structure at polymeric microparticles

机译:聚合物微粒的受控覆盖和结构的赤铁矿纳米粒子单层形成

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摘要

The deposition of hematite nanoparticles (22 nm and 29 nm in diameter) on negatively charged polystyrene microspheres (820 nm in diameter) was studied by micro-electrophoretic measurements and AFM. The influence of ionic strength, varied between 10(-4) and 10(-2) M, was determined. Initially, the electrophoretic mobility change of microspheres upon the addition of controlled amount of hematite nanoparticles were measured. These dependencies were quantitatively interpreted in terms of the general electrokinetic model. This allowed to determine the coverage of nanoparticles on microspheres under in situ conditions, which increased with ionic strength attaining 0.35 for the ionic strength of 10-2 M and 29 in diameter hematite particles. This effect, attributed to the decreasing range of lateral electrostatic repulsion among deposited particles, was accounted for by the random sequential adsorption model. However, the coverages attained for lower ionic strength exceeded the theoretical predictions. This effect was interpreted in terms of an additional electrostatic screening due to polymeric chains present at the microparticle surface. The acid base properties of the hematite monolayers were also acquired by applying thorough micro-electrophoretic measurements. The obtained results confirmed a feasibility of preparing hematite nanoparticle monolayers on polymeric carrier microspheres having well-defined coverage and structure. (C) 2017 Elsevier Inc. All rights reserved.
机译:赤铁矿纳米颗粒的上带负电荷的聚苯乙烯微球(直径为820纳米)的沉积(22纳米,直径为29纳米)通过微电泳测量和AFM研究。的离子强度的影响,在10(-4)和10(-2)M变化,进行了测定。首先,测定在加入赤铁矿纳米颗粒的控制量的微球的电泳迁移率的变化。这些依赖关系在一般电动模式方面进行了定量解释。这允许以确定下原位条件下,其与离子强度在直径的赤铁矿微粒达到0.35 10-2 M上的离子强度和29增加了对微球的纳米颗粒的覆盖范围。此效果,归因于横向静电斥力的沉积颗粒之间的减小范围,是由随机顺序吸附模型占。然而,获得更低的离子强度的覆盖范围超出了理论预测。这种效应被解释在附加的静电屏蔽方面由于存在于微粒表面的聚合链。赤铁矿单层的酸碱性能也通过施加彻底微电泳测量获得的。将所得到的结果证实了制备在具有良好定义的覆盖范围和结构聚合物载体微球赤铁矿纳米颗粒单层的可行性。 (c)2017年Elsevier Inc.保留所有权利。

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