Xiao Junxiong, He Mukun, Zhan Beibei, Guo Hua, Yang Jing-Liang, Zhang Yali, Qi Xiaosi, Gu Junwei
College of Physics, Guizhou Province Key Laboratory for Photoelectrics Technology and Application, Guizhou University, Guiyang City 550025, People's Republic of China.
Shaanxi Key Laboratory of Macromolecular Science and Technology, School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an, 710072, Shaanxi, People's Republic of China.
Mater Horiz. 2024 Nov 25;11(23):5874-5894. doi: 10.1039/d4mh00793j.
The widespread adoption of wireless communication technology, especially with the introduction of artificial intelligence and the Internet of Things, has greatly improved our quality of life. However, this progress has led to increased electromagnetic (EM) interference and pollution issues. The development of advanced microwave absorbing materials (MAMs) is one of the most feasible solutions to solve these problems, and has therefore received widespread attention. However, MAMs still face many limitations in practical applications and are not yet widely used. This paper presents a comprehensive review of the current status and future prospects of MAMs, and identifies the various challenges from practical application scenarios. Furthermore, strategies and principles for the construction of multifunctional MAMs are discussed in order to address the possible problems that are faced. This article also presents the potential applications of MAMs in other fields including environmental science, energy conversion, and medicine. Finally, an analysis of the potential outcomes and future challenges of multifunctional MAMs are presented.
无线通信技术的广泛应用,特别是随着人工智能和物联网的引入,极大地提高了我们的生活质量。然而,这一进展导致了电磁干扰和污染问题的增加。先进吸波材料(MAMs)的开发是解决这些问题最可行的解决方案之一,因此受到了广泛关注。然而,MAMs在实际应用中仍面临许多限制,尚未得到广泛应用。本文全面综述了MAMs的现状和未来前景,并从实际应用场景中识别出各种挑战。此外,还讨论了构建多功能MAMs的策略和原则,以解决可能面临的问题。本文还介绍了MAMs在环境科学、能量转换和医学等其他领域的潜在应用。最后,对多功能MAMs的潜在成果和未来挑战进行了分析。