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Superparamagnetic Iron Oxide Nanoparticles Incorporated into Silica Nanoparticles by Inelastic Collision via Ultrasonic Field: Role of Colloidal Stability

机译:通过超声波场通过非弹性碰撞掺入二氧化硅纳米粒子中的超顺磁性氧化物纳米颗粒:胶体稳定性的作用

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Superparamagnetic iron oxide nanoparticles (SPION)/Silica composite nanoparticles were prepared by ultrasonically irradiating colloidal suspension of silica and SPION mixture. Both silica and SPION were synthesized independently via co-precipitation and sol-gel method, respectively. Their mixtures were sonicated at different pH between 3 and 5. Electrophoresis measurement and other physicochemical analyses of the products demonstrate that at lower pH SPION was found incorporated into the silica. However, at pH greater than 4,SPION was unstable and unable to withstand the turbulence flow and shock wave from the ultrasonic field. Results suggest that the formation of the SPION/silica composite nanoparticles is strongly related to the inelastic collision induced by ultrasonic irradiation. More so, the formation the composite nanoparticles via the ultrasonic field are dependent on the zeta potential and colloidal stability of the particles.
机译:通过超声波照射二氧化硅和SpiON混合物的胶体悬浮液制备超顺磁性氧化铁纳米颗粒(SpiON)/二氧化硅复合纳米粒子。分别通过共沉淀和溶胶 - 凝胶法独立地合成二氧化硅和SpiON。将它们的混合物在不同的pH中超声处理3和5之间的电泳测量和产品的其他物理化学分析表明,在较低的pH下发现掺入二氧化硅中。然而,在pH大于4时,Spion是不稳定的并且无法承受来自超声波场的湍流流量和冲击波。结果表明,SPION /二氧化硅复合纳米粒子的形成与超声辐射诱导的内弹性碰撞强烈相关。此外,通过超声波场形成复合纳米颗粒取决于颗粒的ζ电位和胶体稳定性。

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