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Magnetite/Poly(ortho-anisidine) Composite Particles and Their Electrorheological Response

机译:磁铁矿/聚(Ortho-Anisidine)复合颗粒及其电风学反应

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摘要

Magnetic and semiconducting Fe3O4/poly(o-anisidine) (POA) core/shell composite particles were fabricated by an oxidation process using Fe3O4 synthesized separately. The dispersion stability in a liquid medium and the electrical conductivity of synthesized particles were improved because of the conductive POA polymeric shell. The morphological, microstructural, compositional/elemental, and thermal behaviors of the particles were characterized using SEM with energy dispersive X-ray spectroscopy, TEM, XRD, and thermogravimetric analysis, respectively. A smart electro-magneto-rheological suspension containing Fe3O4/POA particles with two functionalities, magnetism and conductivity, was prepared. Its electrorheological properties were investigated at different electric field strengths using a rotational rheometer. Without an electric field, the sample demonstrated typical Newtonian fluid behavior, as expected. However, while under the electric field, it exhibited a solid-like behavior, and the dynamic (or elastic) yield stress of the ER fluid increased linearly as a function of the electric field strength in a power-law function with an index of 2.0, following the polarization mechanism.
机译:通过单独合成的Fe 3 O 4通过氧化方法制造磁性和半导体Fe 3 O 4 /聚(POA)核/壳复合颗粒。由于导电POA聚合物壳,改善了液体介质中的分散稳定性和合成颗粒的电导率。使用具有能量分散X射线光谱,TEM,XRD和热重分析的SEM,表征颗粒的形态学,微观结构,组成/元素和热行为。制备含有具有两种功能,磁性和电导率的Fe3O4 / POA颗粒的智能电磁流变悬浮液。使用旋转流变仪在不同的电场强度下研究其电流性能。没有电场,样品展示了典型的牛顿流体行为,如所预期的那样。然而,在电场下,它表现出坚固的行为,并且ER流体的动态(或弹性)屈服应力随着电力法函数中的电场强度的函数而被线性增加,其指数为2.0 ,遵循偏振机制。

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