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首页> 外文期刊>Nanoscale >Compressible and flexible PPy@MoS2/C microwave absorption foam with strong dielectric polarization from 2D semiconductor intermediate sandwich structure
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Compressible and flexible PPy@MoS2/C microwave absorption foam with strong dielectric polarization from 2D semiconductor intermediate sandwich structure

机译:可压缩和灵活PPy@MoS2 / C微波炉吸收泡沫,并有很强的介质从二维半导体中间极化夹层结构

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摘要

Structural engineering represents a major trend in the field of two-dimensional (2D) materials regarding microscopic interfacial electric/dielectric properties and macroscopic device strategies. 2D molybdenum disulfide (MoS2) with semiconductive features and lamellar architecture has been widely applied in the microwave absorption (MA) field. However, due to its limitations of weak dielectric loss capacity and poor intrinsic mechanical property, MoS2-based MA devices are a considerable design challenge for practical applications with the peculiarities of light weight, high absorption performance, flexibility, and compressibility. Herein, 2D MoS2 was riveted on carbonized melamine foam (CMF) templated from a commercial foam skeleton, which was cladded with the conductive polymer polypyrrole (PPy). The as-prepared PPy@MoS2/CMF was integrated to simultaneously achieve an excellent MA performance including a maximum reflection loss (RL) value of -45.40 dB and a wide absorption bandwidth of 3.8 GHz, together with mechanical practicability including a high compression ratio of over 45.6% in volume and a bending angle of over 43.2 degrees. This excellent MA performance is attributed to the synergetic effect from its sandwiched multi-layered skeleton, consisting of a conductive/semiconductive/conductive ternary conductive network, and multiple polarizations from the 2D MoS2 interlayer. Our strategy sheds novel insight into the construction of advanced carbon-supported composites and 2D materials for use in devices, which can be further extended to energy storage and conversion applications.
机译:结构工程是一个主要的趋势二维(2 d)领域的材料关于微观界面电动/介电性能和宏观设备的策略。与半导体特性和层状体系结构已被广泛应用于微波吸收(MA)领域。其介电损耗能力薄弱的局限性和糟糕的内在力学性能,马MoS2-based设备是一个相当大的设计挑战的实际应用重量轻的特点,高吸收性能、灵活性和压缩性。这里,2 d二硫化钼在碳化铆接三聚氰胺泡沫(CMF)从商业模板化泡沫骨架,包芯的导电聚合物聚吡咯(PPy)。好PPy@MoS2 / CMF集成同时达到一个很好的妈妈性能包括最大的反射损失(RL)值为-45.40分贝,广泛吸收带宽3.8 GHz的机械实用性包括高压缩比超过45.6%的体积和弯曲角超过43.2度。是由于协同作用的夹多层骨架组成的导电/半导体/导电三元导电网络,多个偏振从2 d二硫化钼夹层。小说了解先进的建设carbon-supported复合材料和2 d材料使用的设备,它可以进一步扩展能量储存和转换的应用程序。

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