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Magnetoviscous Effect in a Biocompatible Ferrofluid

机译:磁粘性作用在生物相容的铁磁流体中

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The advancing development in biomedical applications of magnetic nanoparticles leads to an increasing demand for reliable data concerning the thermophysical properties of the ferrofluids used. For applications with a relation to the flow behavior of the nanoparticle suspensions—like, e.g., magnetic drug targeting—the understanding of the basic rheological properties of the fluids under the influence of magnetic fields is of general importance. In the ongoing work presented here a magnetite-based commercial ferrofluid featuring multi-domain cores with dextran as surfactant was investigated using rotational rheometry. The analysis includes flow curve as well as yield stress measurements and reveals the magnetoviscous effect of the fluid. It has been found that significant changes of viscosity and of the overall flow behavior are induced even at low magnetic field strengths. The detected effects and therefore the changing rheological behavior of the fluid under investigation should be taken into account for further improvement of biomedical applications as well as for the synthesis of biocompatible ferrofluids.
机译:磁性纳米粒子在生物医学应用中的不断发展导致对有关所用铁磁流体的热物理性质的可靠数据的需求不断增长。对于与纳米颗粒悬浮液的流动行为有关的应用(例如磁性药物靶向),了解在磁场作用下流体的基本流变特性至关重要。在本文介绍的正在进行的工作中,使用旋转流变仪研究了一种以磁铁矿为基的商业铁磁流体,该流体以具有葡聚糖作为表面活性剂的多畴核为特征。该分析包括流量曲线以及屈服应力测量,并揭示了流体的磁粘性效应。已经发现,即使在低磁场强度下,也会引起粘度和整个流动行为的显着变化。为了进一步改善生物医学应用以及生物相容性铁磁流体的合成,应考虑检测到的作用以及因此所研究流体的流变行为的变化。

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