首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Nano iron oxide-deposited calcium copper titanate/polyimide hybrid films induced by an external magnetic field: toward a high dielectric constant and suppressed loss
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Nano iron oxide-deposited calcium copper titanate/polyimide hybrid films induced by an external magnetic field: toward a high dielectric constant and suppressed loss

机译:外部磁场诱导的纳米氧化铁沉积钛酸铜铜/聚酰亚胺杂化膜:介电常数高且损耗得到抑制

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摘要

In this paper, we report promising dielectric characteristics of iron oxide-deposited nanosized calcium copper titanate (nano CCTO-Fe3O4)/polyimide (PI) hybrid films induced by an external magnetic field. Nano CCTO particles with a pure perovskite cubic structure and without impurity phases were prepared, and then Fe3O4 nanoparticles were deposited as discrete units on the surface of CCTO to fabricate nano CCTO-Fe3O4 hybrid particles. The effects of magnetic field treatments on the dielectric properties of the composites were investigated in detail. The nano CCTO-Fe3O4/PI hybrid films annealed under an applied magnetic field exhibited a substantial increase in dielectric permittivity, a slight increase in dielectric loss, and a decrease in the percolation threshold. For the hybrid composites subjected to a magnetic field treatment for 30 min at 90 degrees C, a high dielectric permittivity of 308 and relatively low dielectric loss of 0.60 at 100 Hz were simultaneously achieved when the content of nano CCTO-Fe3O4 was only 12 vol%. Such composites are promising for applications in electronic devices. The experimental results are well explained by percolation theory, which indicated that the enhanced dielectric properties of the hybrid films mainly originated from the large interfacial area and interfacial polarization induced by the external magnetic field.
机译:在本文中,我们报道了由外部磁场感应的铁氧化物沉积的纳米钛酸钙铜纳米粉(纳米CCTO-Fe3O4)/聚酰亚胺(PI)混合膜的介电特性。制备具有纯钙钛矿立方结构且无杂质相的纳米CCTO颗粒,然后将Fe3O4纳米颗粒作为离散单元沉积在CCTO表面上,以制备纳米CCTO-Fe3O4杂化颗粒。详细研究了磁场处理对复合材料介电性能的影响。在外加磁场下退火的纳米CCTO-Fe3O4 / PI杂化膜的介电常数显着增加,介电损耗略有增加,渗透阈值降低。当纳米CCTO-Fe3O4的含量仅为12 vol%时,对于在90摄氏度下经过30分钟磁场处理的杂化复合材料,同时实现了308的高介电常数和100Hz的0.60的相对低介电损耗。 。这种复合材料有望用于电子设备中。渗流理论很好地解释了实验结果,表明混合膜的介电性能增强主要来自大的界面面积和外部磁场引起的界面极化。

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