Filling

L. Fuster-López
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引用次数: 4

Abstract

Designing highly reliable and practical microwave absorbers is one of the most important research directions in the microwave absorbing field. Many absorbents suffer from concentration-sensitivity and environmental-sensitivity dilemmas in practical applications. Here, sea urchin-like aggregates of MnO 2 nanotubes were synthesized by a simple hydrothermal method, which exhibit an outstanding impedance matching characteristic. The composites based on sea urchin-like aggregates of MnO 2 nanotubes show excellent microwave absorption performance in a wide concentration domain from 20 wt.% to 70 wt.%, corresponding to electrical conductivities from 1.86 × 10 − 7 to 1.85 × 10 − 5 S/m. Such a wide concentration range of absorbent for excellent microwave absorption is mainly attributed to the beneficial impedance matching properties of sea urchin-like aggregates of hollow nanotubes. A competitive absorption bandwidth of 3.36 GHz is achieved at 1 mm thickness, which can be broadened to 13.4 GHz by structural design. This work shows a new scheme for designing reliable and practical microwave absorbers benefit from the wide absorbent concentration domain
填充
设计高可靠、实用的微波吸收器是微波吸收领域的重要研究方向之一。许多吸收剂在实际应用中存在浓度敏感和环境敏感的难题。本文采用简单的水热法合成了海胆样二氧化锰纳米管聚体,该聚体具有优异的阻抗匹配特性。以海胆样二氧化锰纳米管聚集体为基础的复合材料在20 ~ 70 wt %的宽浓度范围内具有优异的微波吸收性能,对应的电导率为1.86 ~ 1.85 × 10−5 S/m。吸收剂的浓度范围如此之广,具有优异的微波吸收性能,主要归功于中空纳米管类海胆聚集体的阻抗匹配特性。在厚度为1 mm时可获得3.36 GHz的竞争吸收带宽,通过结构设计可将其展宽至13.4 GHz。这一工作为设计可靠实用的微波吸收剂提供了一种新的方案,该方案得益于吸收剂的宽浓度域
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