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首页> 外文期刊>Nanomaterials >Facile Synthesis of [email?protected] x S y @MoS 2 Composites with Hierarchical Structures for Microwave Absorption
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Facile Synthesis of [email?protected] x S y @MoS 2 Composites with Hierarchical Structures for Microwave Absorption

机译:易于合成的具有分层结构的[受电子邮件保护的] x S y @MoS 2复合材料

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Graphene-based powder absorbers have been used to attain excellent microwave absorption. However, it is not clear if inferior microwave absorption by pure graphene materials can be attributed to impedance mismatching or inadequate attenuation capability. In this comparative study, we focus on these aspects. Graphene nanoplatelets (GNPs) multi-component composites ( [email?protected] x S y @MoS 2 ) were prepared by hydrothermal reaction with different S and Mo molar ratios. The morphologies, phase crystals, elemental composition, and magnetic properties of the composites were also analyzed. In addition, microwave absorption of the as-prepared samples was investigated and it revealed that the impedance mismatching could be responsible for inferior microwave absorption; higher conductivity can lead to skin effect that inhibits the further incidence of microwaves into the absorbers. Furthermore, the optimum reflection loss (RL) of [email?protected] x S y @MoS 2 -2 can reach ?43.3 dB at a thickness of 2.2 mm and the corresponding bandwidth with effective attenuation (RL ?10 dB) of up to 3.6 GHz (from 7.0 to 10.6 GHz). Compared with the GNPs, the enhanced microwave absorption can be assigned to the synergistic effects of conductive and dielectric losses.
机译:已经使用基于石墨烯的粉末吸收剂来获得优异的微波吸收。但是,尚不清楚纯石墨烯材料对微波的吸收差是否归因于阻抗不匹配或衰减能力不足。在本比较研究中,我们将重点放在这些方面。通过水热反应以不同的S和Mo摩尔比制备石墨烯纳米片(GNPs)多组分复合材料([电子邮件保护] x S y @MoS 2)。还分析了复合材料的形貌,相晶体,元素组成和磁性能。另外,对制备样品的微波吸收进行了研究,结果表明阻抗失配可能是导致微波吸收差的原因。较高的电导率会导致集肤效应,从而抑制微波进一步进入吸收器。此外,受[电子邮件保护] x S y @MoS 2 -2的最佳反射损耗(RL)在厚度为2.2 mm时可以达到?43.3 dB,并且相应的带宽具有有效的衰减(RL <?10 dB)。到3.6 GHz(从7.0到10.6 GHz)。与GNP相比,增强的微波吸收可以归因于传导损耗和介电损耗的协同效应。

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