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首页> 外文期刊>Journal of Colloid and Interface Science >Preparation and characterization of carbonyl iron/poly(butylcyanoacrylate) core/shell nanoparticles
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Preparation and characterization of carbonyl iron/poly(butylcyanoacrylate) core/shell nanoparticles

机译:羰基铁/聚(氰基丙烯酸丁酯)核/壳纳米粒子的制备与表征

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In this article a method is described to prepare composite colloidal nanoparticles, consisting of a magnetic core (carbonyl iron) and a biodegradable polymeric shell [poly(butylcyanoacrylate) or PBCA]. The method is based on the so-called anionic polymerization procedure, often used in the synthesis of poly(alkylcyanoacrylate) nanospheres designed for drug delivery. Interest of this investigation is based upon the fact that the heterogeneous Structure of the particles can confer them both the possibility to respond to external magnetic fields and to be used as drug carriers. In order to investigate to what extent do the particles participate of this mixed properties, we compare in this work the physical characteristics (structure. chemical composition. specific surface area and surface electrical and thermodynamic properties) of the core/shell particles with those of both the nucleus and the coating material. This preliminary study shows that the mixed particles display an intermediate behavior between that of carbonyl iron and PBCA spheres. Electrophoretic mobility measurements as a function of pH and as a function of KNO3 concentration. show a great similarity between the core/shell and pure polymer nanoparticles. Similary, a surface thermodynamic study performed on the three types of particles demonstrated that the electron-donor component of the surface free energy of the solids is very sensitive to the surface composition. In fact. a measurable decrease of such component is found for core/shell particles as compared to carbonyl iron. We also analyzed the influence of the relative amounts of polymer and carbonyl iron on the characteristics of the composite particles: data on the coating thickness, the amount of polymer bound to the magnetic nuclei, the redispersibility characteristics of the suspensions and the surface electrical and thermodynamic properties. suggest that the optimal synthesis conditions are obtained for a 4/3 initial monomer/carbonyl iron weight ratio. (c) 2006 Elsevier Inc. All rights reserved.
机译:本文描述了一种制备复合胶体纳米颗粒的方法,该复合胶体纳米颗粒由磁芯(羰基铁)和可生物降解的聚合物壳[聚(氰基丙烯酸丁酯)或PBCA]组成。该方法基于通常用于合成用于药物递送的聚(氰基丙烯酸烷基酯)纳米球的合成的所谓阴离子聚合程序。这项研究的兴趣基于这样一个事实,即颗粒的异质结构既可以使它们具有响应外部磁场的可能性,又可以用作药物载体。为了研究颗粒在何种程度上参与了这种混合特性,我们在这项工作中将核/壳颗粒的物理特性(结构,化学成分,比表面积以及表面电和热力学特性)与两者的物理特性进行了比较。核和涂层材料。这项初步研究表明,混合颗粒在羰基铁和PBCA球之间表现出中间行为。电泳迁移率测量值与pH值和KNO3浓度的关系。在核/壳和纯聚合物纳米粒子之间显示出极大的相似性。类似地,对三种类型的颗粒进行的表面热力学研究表明,固体表面自由能的电子给体组分对表面组成非常敏感。事实上。与羰基铁相比,对于核/壳颗粒发现了这种组分的可测量的减少。我们还分析了聚合物和羰基铁的相对含量对复合颗粒特性的影响:涂层厚度,结合到核上的聚合物数量,悬浮液的再分散性特性以及表面电和热力学数据属性。提示对于4/3的初始单体/羰基铁重量比可获得最佳的合成条件。 (c)2006 Elsevier Inc.保留所有权利。

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