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首页> 外文期刊>Journal of nanoscience and nanotechnology >Brownian Relaxation of Interacting Magnetic Nanoparticles in a Colloid Subjected to a Pulsatile Magnetic Field
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Brownian Relaxation of Interacting Magnetic Nanoparticles in a Colloid Subjected to a Pulsatile Magnetic Field

机译:脉冲磁场作用下胶体中相互作用磁性纳米粒子的布朗弛豫

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摘要

We have investigated and modeled the effect of interaction among magnetic particles and the magnitude and duration of external applied magnetic field on Brownian relaxation in a colloidal suspension. In the case of interacting magnetic particles, Brownian relaxation depends on the interparticle dipole-dipole interaction, which slows down the overall Brownian relaxation process of magnetic particles in the colloidal suspension. The individual magnetic particle experiences torque when a pulsatile magnetic field is applied. The torque due to the external field randomizes the particle rotation similar to that of the thermal energy. A faster Brownian relaxation is observed when individual magnetic particles are magnetized for a short duration. Magnetizing the magnetic particle for a longer duration suppress the rotational motion hence the effect of torque on Brownian relaxation.
机译:我们已经研究和建模了磁性粒子之间的相互作用以及外部施加磁场的大小和持续时间对胶体悬浮液中布朗弛豫的影响。在磁性粒子相互作用的情况下,布朗弛豫取决于粒子间偶极-偶极相互作用,这减慢了胶体悬浮液中磁性粒子的总体布朗弛豫过程。当施加脉动磁场时,单个磁性粒子会经历扭矩。与外部能量相似,由于外场产生的扭矩使粒子旋转随机化。当单个磁性粒子在短时间内磁化时,观察到更快的布朗弛豫。将磁性粒子长时间磁化会抑制旋转运动,因此会产生转矩对布朗弛豫的影响。

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