Fan Yihao, Liu Zihao, Li Qingyan, Zhao Kehan, Ahmad Mudasir, Liu Pei, Zhang Qiuyu, Zhang Baoliang
School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an 710072, China.
Xi'an Key Laboratory of Functional Organic Porous Materials, Northwestern Polytechnical University, Xi'an 710129, China.
ACS Appl Mater Interfaces. 2023 Sep 6;15(35):41720-41731. doi: 10.1021/acsami.3c08563. Epub 2023 Aug 23.
In this paper, a MoS/MXene/N-doped carbon (NC) porous composite microsphere with a wrinkled surface was designed and constructed. Lithium fluoride exfoliation and lithium-ion etching fabricated two types of 2D assembly elements, MXene (TiCT) and MoS nanosheets. The two nanosheets were self-assembled by an ultrasonic spray technique with high-temperature reduction, and MoS/MXene microspheres with 3Dwrinkled shapes were obtained. The coating of the surface NC layer was achieved by the carbonization of a polydopamine (PDA) precursor formed by the self-polymerization of dopamine. The amount of PDA coating and raw material ratio significantly affect the microstructure and electromagnetic wave absorption performance. The optimal MXene to MoS mass ratio is 5:1, and the optimal coating time and filler amount are 8 h and 40%. MoS/MXene/NC composite microspheres exhibit excellent absorption performance with low reflection losses (RL) of -52.9 dB at 6.4 GHz and high adequate absorption bandwidths of 5.2 GHz. By adjusting the thickness of the absorber, the full coverage of the C-Ku band (4-18 GHz) can be achieved. As a new composite absorber, it has significant potential applications.
本文设计并构建了一种具有褶皱表面的MoS/MXene/N掺杂碳(NC)多孔复合微球。通过氟化锂剥离和锂离子蚀刻制备了两种二维组装元件,即MXene(TiCT)和MoS纳米片。这两种纳米片通过超声喷雾技术与高温还原进行自组装,得到了具有三维褶皱形状的MoS/MXene微球。表面NC层的包覆是通过多巴胺自聚合形成的聚多巴胺(PDA)前驱体的碳化实现的。PDA包覆量和原料比例显著影响微观结构和电磁波吸收性能。MXene与MoS的最佳质量比为5:1,最佳包覆时间和填料量分别为8小时和40%。MoS/MXene/NC复合微球表现出优异的吸收性能,在6.4 GHz时具有-52.9 dB的低反射损耗(RL)和5.2 GHz的高充分吸收带宽。通过调整吸收体的厚度,可以实现C-Ku波段(4-18 GHz)的全覆盖。作为一种新型复合吸收体,它具有重要的潜在应用价值。