双锰矿
多面体
电介质
调制(音乐)
材料科学
微型多孔材料
结晶学
化学
物理
光电子学
复合材料
锰
冶金
数学
组合数学
声学
氧化锰
作者
Xiaogu Huang,Jiaping Guan,Yuejun Feng,Qinghua Zhang,Bin Quan,Gaofeng Shao,Lin Gu,Tengchao Guo,Guomin Sun,Xiaohui Zhu
标识
DOI:10.1016/j.xcrp.2024.102350
摘要
Summary
Single MnO6 octahedra possess poor electrical conductivity, limited dipole content, and low electron spin magnetic moment in birnessites, which compromises their dielectric and magnetic loss capabilities. Here, we develop birnessite-Na0.35Mn0.92O1.92·0.63H2O with multiplicate polyhedra composed of MnO6 octahedra and MnO5 square pyramids via an Mn and O vacancy co-modulation approach. Through this modulation, poor electrical conductivity, limited dipole content, and low electron spin magnetic moment are prominently transformed by multiplicate polyhedra, resulting in much promoted dielectric and magnetic loss capabilities. This birnessite-Na0.35Mn0.92O1.92·0.63H2O with multiplicate polyhedra as an absorber can deliver a minimum reflection loss value of −56.4 dB with an effective absorption bandwidth of 2.7 GHz at a low thickness of 3.0 mm, demonstrating potential application in microwave absorption. This study provides important insights into how polyhedron structure influences electrical conductivity, dipole content, and electron spin magnetic moment to develop high-performance electromagnetic wave-absorbing materials for microwave absorption.
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