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Conductive WS_2-NS/CNTs hybrids based 3D ultra-thin mesh electromagnetic wave absorbers with excellent absorption performance

机译:基于WS_2-NS / CNTS的3D超薄网电磁波吸收器,具有优异的吸收性能

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Herein, ultra-thin tungsten disulfide nanosheets/carbon nanotubes (WS2-NS/CNTs) hybrids were successfully synthesized by using a one-step hydrothermal method. The WS2-NS is evenly grown on the surfaces of CNTs, leading to a remarkable three-dimensional (3D) heterostructure. Outstanding electromagnetic wave absorption performance of the WS2-NS/CNTs hybrids can be achieved by tuning the amount of CNTs. The minimum reflection loss can reach up to -51.6 dB at 14.8 GHz, and the effective absorption bandwidth is 5.4 GHz for the hybrids with a thickness of 1.95 mm. Comparison of the results with those of simple mixtures of WS2-NS and CNTs prepared by using ultrasonic methods indicates that the absorption performance of the optimized WS2-NS/CNTs hybrids are closely related to that of the 3D mesh conducive network constructed by the addition of CNTs and the synergistic effect of WS2-NS and CNTs in the hybrids. These WS2-NS/CNTs hybrids open a new avenue for the development of electromagnetic wave absorbers with extraordinary absorption performance, light weight, small thickness, broad absorption bandwidth, and low cost.
机译:这里,通过使用一步水热法成功地合成超薄钨醛纳米晶片/碳纳米管(WS2-NS / CNT)杂种。 WS2-NS均匀地生长在CNT的表面上,导致卓越的三维(3D)异质结构。通过调整CNT的量,可以通过调整CNT的量来实现WS2-NS / CNTS杂种的出色电磁波吸收性能。最小反射损耗可达14.8 GHz高达-51.6 dB,并且有效吸收带宽为5.4GHz,含量为1.95mm。通过使用超声波方法制备的简单混合物的结果比较结果表明,优化的WS2-NS / CNT混合动力车的吸收性能与由添加构建的3D网格有用网络的吸收性能密切相关CNT和杂交种中的WS2-NS和CNT的协同效应。这些WS2-NS / CNTS混合动力车开辟了一种新的电磁波吸收器,具有非凡的吸收性能,重量轻,小的厚度,宽吸收带宽和低成本。

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