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Effect of synthesis conditions on physiochemical properties of lauric acid coated superparamagnetic iron oxide nanoparticles

机译:合成条件对月桂酸包覆的超顺磁性氧化铁纳米粒子理化特性的影响

摘要

Lauric acid coated iron oxide nanoparticles (LAIONPs) is very promising in biomedical applications. Understanding the influences from synthesis processes on physiochemical properties of LAIONPs is very important for their implementations in in vivo and in vitro studies. Here, the superparamagnetic spherical-shaped LAIONPs samples have been prepared based on coprecipitation method (CP-LAIONPs) and through thermal decomposition using FeO(OH) as iron precursor (TD-LAIONPs), respectively. The effects of different stirring speeds in coprecipitation reaction and different heating profiles in thermal decomposition route on the products properties (including size, mass ratio of surfactants, and saturation magnetization) were revealed. For nanoparticles with similar cores sizes (∼11 nm) obtained from two different synthesis methods, the TD-LAIONPs showed more spherical morphologies, narrower size distributions in both core sizes and hydrodynamic sizes, and stronger magnetic properties than the CP-LAIONPs. In addition, ferromagnetic cubic-shaped LAIONPs with sizes larger than 50 nm could be obtained using another iron precursor in thermal decomposition route. Thus, the synthesis methods and fabrication conditions should be appropriately chosen to obtain LAIONPs with desirable properties for specific purposes.
机译:月桂酸涂层的氧化铁纳米颗粒(LAIONPs)在生物医学应用中非常有前途。理解合成过程对LAIONPs的理化性质的影响对于它们在体内和体外研究中的实施非常重要。在此,分别基于共沉淀法(CP-LAIONPs)和使用FeO(OH)作为铁前体(TD-LAIONPs)的热分解制备了超顺磁性球形LAIONPs样品。揭示了共沉淀反应中不同搅拌速度和热分解途径中不同加热曲线对产物性质(包括尺寸,表面活性剂的质量比和饱和磁化强度)的影响。对于通过两种不同的合成方法获得的具有相似核心尺寸(〜11 nm)的纳米粒子,TD-LAIONPs显示出更多的球形形态,在核心尺寸和流体力学尺寸上都显示出更窄的尺寸分布,并且比CP-LAIONPs拥有更强的磁性。另外,可以通过在热分解途径中使用另一种铁前体获得尺寸大于50 nm的铁磁立方形状的LAIONP。因此,应该适当地选择合成方法和制造条件以获得具有特定目的所需性质的LAIONP。

著录项

  • 作者

    Li L; Leung CW; Pong PWT;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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