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The Synthesis of Magnetic and Fluorescent Bi-functional Silica Composite Nanoparticles via Reverse Microemulsion Method

机译:反向微乳液法合成磁性和荧光双功能二氧化硅复合纳米粒子

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In this paper, a simple synthesis method of small-size( about 50 nm in diameter), high magnetic and fluorescent bi-functional silica composite nanoparticles were developed, in which water-soluble Fe3O4 magnetic nanoparticlels (MNs) and CdTe quantum dots (QDs) were directly incorporated into a silica shell by reverse microemulsion method. The high luminescent QDs can be used as luminescent marker, while the high magnetic MNs allow the manipulation of the bi-functional silica composite nanoparticles by external magnetic field. Poly (dimethyldiallyl ammonium chloride) was used to balance the electrostatic repulsion between CdTe QDs and silica intermediates to enhance the fluorescence intensity of MNs-QDs/SiO2 composite nanoparticles. The optical property, magnetic property, size characterization of the bi-functional composite nanoparticles were studied by UV-Vis and PL emission spectra, VSM, TEM, SEM. The stabilities toward time, pH and ionic strength and the effect of MNs on the fluorescence properties of bi-functional silica composite nanoparticles were also studied in detail. By modifying the surface of MNs-QDs/SiO2 composite nanoparticles with amino and methylphosphonate groups, biologically functionalized and monodisperse MNs-QDs/SiO(2)composite nanoparticles can be obtained. In this work, bi-functional composite nanoparticles were conjugated with FITC labeled goat anti-rabbit IgG, to generate novel fluorescent-magnetic-biotargeting tri-functional composite nanoparticles, which can be used in a number of biomedical application.
机译:本文开发了一种简单的小尺寸(直径约50 nm),高磁性和荧光双功能二氧化硅复合纳米粒子的合成方法,其中水溶性Fe3O4磁性纳米粒子(MNs)和CdTe量子点(QDs)通过逆向微乳液法将)直接掺入二氧化硅壳中。高发光QD可用作发光标记,而高磁性MN允许通过外部磁场操作双功能二氧化硅复合纳米颗粒。聚(二甲基二烯丙基氯化铵)用于平衡CdTe QD和二氧化硅中间体之间的静电排斥,以增强MNs-QDs / SiO2复合纳米粒子的荧光强度。通过UV-Vis和PL发射光谱,VSM,TEM,SEM研究了双功能复合纳米颗粒的光学性能,磁性,尺寸表征。还详细研究了时间,pH和离子强度的稳定性以及MNs对双功能二氧化硅复合纳米粒子荧光性质的影响。通过用氨基和甲基膦酸酯基团修饰MNs-QDs / SiO2复合纳米颗粒的表面,可以获得生物功能化和单分散的MNs-QDs / SiO(2)复合纳米颗粒。在这项工作中,将双功能复合纳米颗粒与FITC标记的山羊抗兔IgG偶联,以生成新型的荧光-磁性-生物靶向三功能复合纳米颗粒,可将其用于许多生物医学应用中。

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