首页> 外文期刊>Journal of the South Carolina Academy of Science >The Effect of Confinement on Fe2O3 Nanoparticles in Free Diffusion and with a Horizontal Magnetic Field
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The Effect of Confinement on Fe2O3 Nanoparticles in Free Diffusion and with a Horizontal Magnetic Field

机译:约束条件下水平扩散磁场对Fe2O3纳米粒子的自由扩散影响

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We investigated the magnitude of the confinement effect's influence on the free diffusion of Iron Oxide Fe2O3 in pure water contained in cells of different volumes and also that of an applied magnetic field. A shadowgraph apparatus consisting of a super luminous diode (SLD) source, a CCD camera, and achromatic lenses was used to record and analyze the changing indices of refraction due to the presence of concentration-driven fluctuations as the solution diffuses. Extracted frames from this recording were processed through a Differential Dynamic Algorithm (DDA) that determined the dynamics of the process, such as the structure function. The results generated by the DDA was further analyzed to determine how the amplitude of concentration fluctuations change over time and how long those fluctuations are present, revealing a dependency of the dynamics on the size of the cell containing the solution.
机译:我们研究了限制效应对氧化铁Fe2O3在不同体积的细胞中所含的纯水中以及所施加的磁场中的自由扩散的影响的大小。由超发光二极管(SLD)源,CCD相机和消色差透镜组成的阴影图设备用于记录和分析由于溶液扩散时浓度驱动的波动而引起的折射率变化。从记录中提取的帧通过差分动态算法(DDA)处理,该算法确定过程的动力学,例如结构函数。进一步分析了DDA产生的结果,以确定浓度波动的幅度如何随时间变化以及这些波动存在多长时间,从而揭示了动力学对包含溶液的细胞大小的依赖性。

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