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Synthesis of PEGylated Magnetic Nanoparticles With Different Core Sizes

机译:不同核尺寸的聚乙二醇磁性纳米粒子的合成

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摘要

Tailoring the properties of superparamagnetic nanoparticles (MNPs) is essential for various nano-based biological applications. Having control over the properties of the MNPs permits a maximum flexibility. Starting from monodisperse iron oxide MNPs produced by thermal decomposition, we report on the optimization and characterization of a first and second seed mediated growth step by varying the surfactant amount and by optimizing the heating steps. We demonstrate the ability to gradually increase the size of crystalline MNPs from 6 over 9 to 12 nm with an improving monodispersity as demonstrated by Transmission Electron Microscopy, Dynamic Light Scattering and X-ray diffraction. The magnetic properties of the MNPs, studied by Vibrating Sample Magnetometry, were in concert with their size increase. We also show the functionalization of these particles with polyethylene glycolated silanes, to render the MNPs stable in water. Different characterization techniques, namely Transmission Electron Microscopy, Dynamic Light Scattering, Fourier-transform InfraRed, Thermo gravimetric analysis and X-ray Photoelectron Spectroscopy, confirmed the successful engraftment of the silanes on the MNP's surface. In conclusion, the proposed route of step-wise synthesis in combination with silane functionalization allows fine tuning the physical properties of iron oxide MNPs for applications in an aqueous environment.
机译:调整超顺磁性纳米粒子(MNP)的属性对于各种基于纳米的生物应用至关重要。控制MNP的属性可实现最大的灵活性。从通过热分解产生的单分散氧化铁MNPs开始,我们报告了通过改变表面活性剂的量和优化加热步骤对第一和第二种子介导的生长步骤的优化和表征。我们证明了通过改进的单分散性,通过透射电子显微镜,动态光散射和X射线衍射证明,能够将晶体MNP的尺寸从6个逐渐增加到9 nm到12 nm逐渐增加。通过振动样品磁力分析法研究的MNP的磁性与其尺寸的增加是一致的。我们还显示了聚乙二醇化硅烷对这些颗粒的功能化,以使MNP在水中稳定。透射电子显微镜,动态光散射,傅立叶变换红外,热重分析和X射线光电子能谱等不同的表征技术证实了硅烷已成功植入MNP表面。总之,与硅烷官能化结合的逐步合成的拟议路线允许微调用于水性环境中的氧化铁MNP的物理性能。

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