...
首页> 外文期刊>Nanoscale >Enhanced polarization from flexible hierarchical MnO2 arrays on cotton cloth with excellent microwave absorption
【24h】

Enhanced polarization from flexible hierarchical MnO2 arrays on cotton cloth with excellent microwave absorption

机译:从灵活的层次提高极化汇总数组与优秀的棉布微波吸收

获取原文
获取原文并翻译 | 示例

摘要

To develop flexible microwave absorbers with strong attenuation capability has become a formidable challenge for applications of camouflage, stealth, and anti-electromagnetic pollution. Herein, a series of highly uniform cotton cloth@MnO2 (CC@MnO2) hierarchical structures with superior absorption performances were fabricated by simultaneously changing their intrinsic (alpha/delta phase) and extrinsic (2D/1D geometry) characteristics. The distinct absorption capability was dominantly contributed by the vertically grown dielectric MnO2 1D nanotube and conductive CC substrate, which could serve as a highly oriented backbone to ensure rapid electron transportation. Therefore, a well-designed CC@MnO2 sample (alpha phase instead of the delta phase) exhibits the best absorption performance. The maximum reflection loss (RL) is -53.2 dB at 5.4 GHz and the effective bandwidth is 5.84 GHz for a thickness of only 2 mm. This unique structure exhibits polarization, conduction loss, and strong dissipation capability, which can be attributed to the high density of accumulated charges trapped at the interface, as confirmed by the electron holography analysis. Meanwhile, the MnO2 coating does not affect the original flexibility of the CC and yields a massive interface and electronic conduction path. It is expected that CC@MnO2 might shed a new light on the design of microwave absorbers.
机译:开发灵活的微波吸收剂已经成为一个强大的衰减能力艰巨的挑战的应用伪装,隐形,抗电磁污染。棉花cloth@MnO2 (CC@MnO2)层次结构与吸收性能优越是同时制造的,改变自己吗内在(α/δ相)和外在(2 d / 1 d几何)的特点。吸收能力是主导性贡献的垂直生长介质汇总1 d纳米管导电CC衬底,作为一个高度面向骨干,以确保快速电子运输。精心设计的CC@MnO2样本(α相三角洲的阶段)展品最好的吸收的性能。在5.4 GHz -53.2 dB和有效带宽是5.84 GHz的厚度只有2毫米。独特的结构展品极化,传导损失,和强大的耗散能力,这可以归因于高被困在密度积累的指控界面,确认的电子全息术的分析。不影响原来的灵活性CC和电子并产生一个巨大的接口传导路径。可能把一缕新的光束照在微波的设计吸收器。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号