首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Achieving high performance electromagnetic wave attenuation: a rational design of silica coated mesoporous iron microcubes
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Achieving high performance electromagnetic wave attenuation: a rational design of silica coated mesoporous iron microcubes

机译:实现高性能电磁波衰减:二氧化硅涂层介孔铁微立方体的合理设计

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摘要

Silica coated mesoporous Fe (Fe@SiO2) microcubes were designed for high performance electromagnetic wave attenuation. Silica coating lowered the permittivity significantly compared to that for bare Fe cubes. Most importantly, even with the silica coating the iron particles kept their shape which ensured a mesoporous structure. The synthetic approach consists of three steps. a-Fe2O3 microcubes were first synthesized by a hydrothermal method. Then, the cubes were coated with silica. The silica coated a-Fe2O3 microcubes were finally reduced under hydrogen gas at 500 °C. The reduction of iron oxide resulted in a removal of oxygen atoms and subsequently left the empty space as pores inside the silica coated iron cubes. The silicon resin composites containing Fe@SiO2 microcubes exhibited impressive electromagnetic wave attenuation characteristics. The reflection loss value of-54 dB could be obtained at 3.2 GHz with a thickness of 4.5 mm. In addition, the mesoporous characteristic offered a low density of Fe@SiO2 mesoporous microcubes. The microcubes enabled a reflection loss of-15 dB with a film thickness as thin as 3 mm. The silica coated mesoporous iron microcubes significantly reduced the usage/thickness of silicon resin composite. They are very promising as a strong attenuation and lightweight electromagnetic wave attenuation material.
机译:设计了二氧化硅包覆的介孔铁(Fe @ SiO2)微立方体,以实现高性能电磁波衰减。与裸露的铁立方体相比,二氧化硅涂层显着降低了介电常数。最重要的是,即使使用二氧化硅涂层,铁颗粒也能保持其形状,从而确保了介孔结构。综合方法包括三个步骤。首先通过水热法合成了α-Fe2O3微立方体。然后,将立方体用二氧化硅涂覆。二氧化硅涂层的a-Fe2O3微立方体最终在500°C的氢气下还原。氧化铁的还原导致氧原子的去除,并随后在二氧化硅涂覆的铁块内部留有空隙作为孔隙。含有Fe @ SiO2微粒的硅树脂复合材料表现出令人印象深刻的电磁波衰减特性。在3.2 GHz的厚度为4.5 mm的情况下,可以获得-54 dB的反射损耗值。另外,介孔特性提供了低密度的Fe @ SiO2介孔微立方体。这些微立方体的薄膜厚度薄至3毫米,因此反射损失为15 dB。二氧化硅涂覆的中孔铁微立方体显着降低了硅树脂复合材料的使用/厚度。它们作为强衰减和轻量电磁波衰减材料非常有前途。

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