Ultrathin MoS2 Nanosheets Encapsulated in Hollow Carbon Spheres: A Case of a Dielectric Absorber with Optimized Impedance for Efficient Microwave Absorption

材料科学 反射损耗 电介质 衰减 微波食品加热 光电子学 阻抗匹配 吸收(声学) 介电损耗 结晶度 电导率 电阻抗 纳米技术 光学 复合材料 复合数 电信 化学 物理 电气工程 物理化学 计算机科学 工程类
作者
Mingqiang Ning,Qikui Man,Guoguo Tan,Zhenkuang Lei,Jingbo Li,Run-Wei Li
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:12 (18): 20785-20796 被引量:121
标识
DOI:10.1021/acsami.9b20433
摘要

A dielectric loss-type electromagnetic wave (EMW) absorber, especially over a broad frequency range, is important yet challenging. As the most typical dielectric attenuation absorber, carbon-based nanostructures were highly pursued and studied. However, their poor impedance-matching issues still exist. Here, to further optimize dielectric properties and enhance reflection loss, ultrathin MoS2 nanosheets encapsulated in hollow carbon spheres (MoS2@HCS) were prepared via a facile template method. The diameter and shell thickness of the as-prepared HCSs were ∼250 and ∼20 nm. The encapsulated MoS2 nanosheets presented high dispersity and crystallinity. Compared to a pure HCS or MoS2 absorber, MoS2@HCS exhibited an optimized impedance characteristic, which can be attributed to the synergistic effects between HCSs (ensuring rapid electron transmission and compensating the low conductivity of MoS2) and MoS2 nanosheets (exposing sufficient numbers of active sites for polarizations and multi-reflection). Consequently, the MoS2@HCS was endowed with −65 dB EMW attenuation ability under 2 mm and the effective attenuation bandwidth under −20 dB was ∼3.3 GHz over the K-band under 1.2 mm and ∼3.4 GHz over the Ka-band under merely 0.7 mm. These results suggested that the MoS2@HCS is a promising dielectric absorber for practical applications. Meanwhile, this work introduces a facile and versatile strategy, which could in principle be extended to other transition metal sulfide@HCS for designing novel EMW absorbers.

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