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Improved magnetodielectric coefficient on polymer based composites through enhanced indirect magnetoelectric coupling

机译:通过增强的间接磁电耦合改善聚合物基复合材料的磁介电系数

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摘要

Particulate composites of ferrite and ferroelectric polymer phases with general formula [xCoFe2O4]/[(1-x) PVDF] were prepared for x = 0, 3, 11 and 20 wt.% by solution casting.The dielectric constant, dielectric loss and saturation magnetization of the polymer composite films increase with increasing CoFe2O4 (CFO) content, being 13, 0.13 and 13 emu.g-1 respectively, for x=20.The magnetodielectric (MD) coupling also depend on the CFO content, the change in the dielectric response (MDE(%)) being the highest for the x=20 sample (4.2%). On the other hand, the highest value of the MD coefficient (γ) is higher on the x=3 sample (0.015 emu-2g2).Those values are favourably compared with the ones found in the ceramic-based MD materials, being the highest reported for polymer composites.These facts, together with the flexibility and scalable production of the composites, leads to their large application potential in areas such as filters, magnetic field sensors and actuators, among others.
机译:通过溶液浇铸制备了x = 0、3、11和20 wt。%的通式为[xCoFe2O4] / [(1-x)PVDF]的铁氧体和铁电聚合物相的颗粒复合材料。介电常数,介电损耗和饱和度聚合物复合膜的磁化强度随CoFe2O4(CFO)含量的增加而增加,x = 20时分别为13、0.13和13 emu.g-1。磁电耦合(MD)也取决于CFO含量, x = 20的样品的最高介电响应(MDE(%))(4.2%)。另一方面,x = 3样品(0.015 emu-2g2)的MD系数(γ)的最大值较高,与陶瓷基MD材料中的MD系数(γ)相比最高这些事实以及复合材料的灵活性和可扩展性生产使其在过滤器,磁场传感器和执行器等领域具有巨大的应用潜力。

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