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首页> 外文期刊>Bulletin of the Korean Chemical Society >Agglomeration Dynamics of Magnetite Nanoparticles at Low Magnetic Field Gradient.
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Agglomeration Dynamics of Magnetite Nanoparticles at Low Magnetic Field Gradient.

机译:低磁场梯度下磁铁矿纳米粒子的凝聚动态。

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Agglomeration of magnetite nanoparticles in the aqueous solution is studied at the low magnetic field gradients of 23-34 17m by monitoring the temporal change of magnetic weight. A conventional electronic balance is used to measure the magnetic weight that is the magnetic force on the magnetic sample by the magnetic field gradient. The magnetic weight grows slowly following the stretched exponential after the instantaneous jump by the Neel and Brown relaxation. Magnetization of the magnetite nanoparticles is estimated from the magnetic weight and compared with the Langevin function. The magnetization is close to the saturation in the studied magnetic field range and the saturation magnetization of the agglomerate of nanoparticles is about 60% of that of the bulk magnetite. Kinetic parameters of the stretched exponential show little the magnetic field dependence in the investigated range. Complex energy landscape is involved in the agglomeration as the stretched exponential dynamics indicates. The half-life of the response function for the magnetic weight change suggests that the pathways of low energy barriers are activated by magnetic field at the early stage of agglomeration.
机译:通过监测磁力的时间变化,在23-34 17m的低磁场梯度下研究水溶液中磁铁矿纳米颗粒的聚集。传统的电子平衡用于测量作为磁场梯度上磁性样品上的磁力的磁力。在瞬时跳跃的尼尔和棕色松弛后,磁力在拉伸指数之后慢慢增长。从磁力估计磁铁矿纳米颗粒的磁化并与Langevin功能相比。磁化在所研究的磁场范围内靠近饱和度,纳米颗粒的附聚物的饱和磁化为大约60%的散装磁铁矿的60%。拉伸指数的动力学参数显示在调查范围内的磁场依赖性。随着拉伸指数动态表示,复杂的能量景观参与了聚集。磁力变化的响应函数的半衰期表明,在附聚的早期阶段的磁场激活低能量屏障的途径。

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