Large Annular Dipoles Bounded between Single‐Atom Co and Co Cluster for Clarifying Electromagnetic Wave Absorbing Mechanism

偶极子 材料科学 极化(电化学) 电介质 Atom(片上系统) 介电损耗 反射损耗 原子物理学 分子物理学 消散 导电体 光电子学 物理 化学 复合材料 物理化学 嵌入式系统 复合数 热力学 量子力学 计算机科学
作者
Hu Liu,Xue–Qian Li,Xiaoying Zhao,Min Zhang,Xinhua Liu,Shichun Yang,Hongjing Wu,Zhenhui Ma
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:33 (40) 被引量:63
标识
DOI:10.1002/adfm.202304442
摘要

Abstract It is very challenging to demonstrate the intrinsic feature and absorption mechanism for electromagnetic (EM) wave absorber since dipole polarization loss is always discussed together with magnetic loss, conductive loss, defects/interfacial polarization, and so on. To address this issue, here, a kind of atomic composites is reported, including single‐atom Co and Co cluster with controllable atom dipole to tune the polarization and establish the link between dipole polarization and the EM wave absorption. Using a chemical synthesis route, the atomic composites are fabricated, including Co single‐atom (SA) sites and cluster (Cs) on nitrogen‐doped graphitic carbon (Co 1+Cs /NGC). Due to the special design, the effect of magnetic loss, conductive loss, and interfacial polarization on EM wave dissipation can be ignored so that it can only highlight dielectric loss caused by dipole polarization. And, by controlling the Co atoms concentration, it can tune the valence state of Co atoms between 0 to +2 to control dipole polarization and relaxation. As a result, the Co 1+Cs /NGC‐2 with Co concentration of 6.0 wt% exhibits optimized dipole moments and thus excellent absorption performance (the reflection loss exceeds −54.3 dB, and the effective absorption bandwidth with RL ≤−10 dB reaches 7.0 GHz at 2.0 mm) due to the effective dipole polarization caused by the large annular dipole bounded between Co SA sites and Co Cs. This study proposes a simplified model to clarify EM wave absorption mechanism from atom view.
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