Lei Wang, Jiawei Cheng, Yixuan Zou, Wanyi Zheng, Yaru Wang, Yaqing Liu, Hairan Zhang, Duo Zhang, Xiaohui Ji
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Current advances and future perspectives of MXene-based electromagnetic interference shielding materials
With the rapid development of the 5th-generation (5G) mobile communication technology, the applications of high-frequency and high-power electronic equipment are becoming increasingly broadened, which seriously affects the operation of electronic components and human health. Therefore, the research on high-performance electromagnetic interference (EMI) shielding materials is of great significance for the development and upgrading of 5G electronic equipment. In recent years, the transition metal carbides, nitrides, and carbonitrides (MXenes) have gradually received extensive attention from scholars due to ultra-high electrical conductivity, large specific surface area, and excellent hydrophilicity. This review introduces the preparation methods of MXenes and the latest research progress of MXene-based nanomaterials in the field of EMI shielding. In this review, the EMI shielding mechanism and the preparation methods of MXenes are briefly introduced first. Next, the research progress of MXene-based EMI shielding materials in recent years is reviewed, and various kinds of MXene-based EMI shielding materials are introduced in detail, especially the preparation of MXene/polymer EMI shielding composites with various structures. The key scientific and technical problems in the field of MXene-based EMI shielding materials are put forward, and the future development trend is prospected.
期刊介绍:
Advanced Composites and Hybrid Materials is a leading international journal that promotes interdisciplinary collaboration among materials scientists, engineers, chemists, biologists, and physicists working on composites, including nanocomposites. Our aim is to facilitate rapid scientific communication in this field.
The journal publishes high-quality research on various aspects of composite materials, including materials design, surface and interface science/engineering, manufacturing, structure control, property design, device fabrication, and other applications. We also welcome simulation and modeling studies that are relevant to composites. Additionally, papers focusing on the relationship between fillers and the matrix are of particular interest.
Our scope includes polymer, metal, and ceramic matrices, with a special emphasis on reviews and meta-analyses related to materials selection. We cover a wide range of topics, including transport properties, strategies for controlling interfaces and composition distribution, bottom-up assembly of nanocomposites, highly porous and high-density composites, electronic structure design, materials synergisms, and thermoelectric materials.
Advanced Composites and Hybrid Materials follows a rigorous single-blind peer-review process to ensure the quality and integrity of the published work.