材料科学
微波食品加热
反射损耗
衰减
吸收(声学)
导电体
消散
联轴节(管道)
光电子学
电导率
介电损耗
合理设计
插入损耗
纳米技术
电介质
复合材料
光学
化学
电信
物理化学
物理
复合数
热力学
计算机科学
作者
Yuan Guo,Yuping Duan,Xiaoji Liu,Hao Zhang,Tingkang Yuan,Ningxuan Wen,Chengwei Li,Huifang Pang,Zeng Fan,Lujun Pan
出处
期刊:Small
[Wiley]
日期:2023-12-02
卷期号:20 (17)
被引量:15
标识
DOI:10.1002/smll.202308809
摘要
Abstract The rational design of absorber size is a promising strategy for obtaining excellent electromagnetic wave (EMW) absorption performance. However, achieving controllable tuning of the material size through simple methods is challenging and the associated EMW attenuation mechanisms are still unclear. In this study, the sizes of metal–organic frameworks (MOFs) are successfully tailored by changing the growth time and the molar ratio of iron (Fe)/organic ligands. The lateral and vertical lengths of MOFs vary in the range of 200 nm to 2 µm and 100 nm to 1 µm, respectively. Both experiments and simulations confirm that the decrease of MOF size favors the formation of more conductive networks, which is beneficial for improving the conductivity loss. Meanwhile, the micromagnetic simulation reveals that the magnetic coupling can be effectively enhanced by the decrease of MOF size, which is conducive to the improvement of magnetic loss, especially in low‐frequency range. The reflection loss of Fe‐based MOFs with optimized size reaches −46.4 dB at 6.2 GHz with an effective absorption bandwidth of 3.1 GHz. This work illustrates the important role of size effect in EMW dissipation and provides an effective strategy for enhancing the low‐frequency EMW absorption performance.
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