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Preparation of porous Fe2O3 nanorods-reduced graphene oxide nanohybrids and their excellent microwave absorption properties

机译:多孔Fe2O3纳米棒还原氧化石墨烯纳米杂化物的制备及其优异的微波吸收性能

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摘要

In this paper, α-Fe2O3 nanoparticles (NPs)-reduced graphene oxide (RGO), α-FeOOH nanorods (NRs)-RGO and porous α-Fe2O3 NRs-RGO could be selectively synthesized by hydrothermal method. The investigations indicated that the obtained α-Fe2O3 NPs, α-FeOOH NRs and porous α-Fe2O3 NRs were either attached on the surface of RGO sheets or coated uniformly by the RGO sheets. And the as-prepared nanohybrids exhibited excellent microwave absorption performance, which was proved to be ascribed to the quarter-wavelength matching model. The optimum reflection loss (RL) values for α-Fe2O3 NPs-RGO, α-FeOOH NRs-RGO and porous α-Fe2O3 NRs-RGO were ca. −32.3, −37.4 and −71.4 dB, respectively. Moreover, compared to the obtained α-Fe2O3 NPs-RGO and α-FeOOH NRs-RGO, the as-prepared porous α-Fe2O3 NRs-RGO nanohybrids exhibited enhanced microwave absorption properties because of their special structure and synergetic effect. The possible enhanced microwave absorption mechanisms were discussed in details. Our results confirmed that the geometrical morphology had a great influence on their microwave absorption properties, which provided a promising approach to exploit high performance microwave absorbing materials.
机译:本文采用水热法选择性地合成了α-Fe2O3纳米颗粒(NPs)-还原氧化石墨烯(RGO),α-FeO​​OH纳米棒(NRs)-RGO和多孔α-Fe2O3NRs-RGO。研究表明,所获得的α-Fe2O3NPs,α-FeO​​OHNRs和多孔α-Fe2O3NRs附着在RGO片的表面上或被RGO片均匀涂覆。所制备的纳米杂化物表现出优异的微波吸收性能,这被证明归因于四分之一波长匹配模型。 α-Fe2O3NPs-RGO,α-FeO​​OHNRs-RGO和多孔α-Fe2O3NRs-RGO的最佳反射损耗(RL)值约为。分别为-32.3,-37.4和-71.4 dB。此外,与所获得的α-Fe2O3NPs-RGO和α-FeO​​OHNRs-RGO相比,所制备的多孔α-Fe2O3NRs-RGO纳米杂化物由于其特殊的结构和协同作用而显示出增强的微波吸收性能。详细讨论了可能的增强的微波吸收机制。我们的结果证实,几何形态对其微波吸收性能有很大的影响,这为开发高性能微波吸收材料提供了有希望的方法。

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