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Novel hollow urchin-like α/γ-MnO2 boost microwave absorption
by
Yang, Wenyun
, Zhu, Tao
, Wang, Wei
, Wang, Rongchen
, Wang, Changsheng
, Yang, Jinbo
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Energy
/ Frequency ranges
/ Impedance matching
/ Manganese dioxide
/ Materials Science
/ Microscopy
/ Microwave absorption
/ Optical and Electronic Materials
/ Oxidation
/ Physics
/ Spectrum analysis
/ Thickness
/ Vibration
2023
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Novel hollow urchin-like α/γ-MnO2 boost microwave absorption
by
Yang, Wenyun
, Zhu, Tao
, Wang, Wei
, Wang, Rongchen
, Wang, Changsheng
, Yang, Jinbo
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Energy
/ Frequency ranges
/ Impedance matching
/ Manganese dioxide
/ Materials Science
/ Microscopy
/ Microwave absorption
/ Optical and Electronic Materials
/ Oxidation
/ Physics
/ Spectrum analysis
/ Thickness
/ Vibration
2023
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Novel hollow urchin-like α/γ-MnO2 boost microwave absorption
by
Yang, Wenyun
, Zhu, Tao
, Wang, Wei
, Wang, Rongchen
, Wang, Changsheng
, Yang, Jinbo
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Energy
/ Frequency ranges
/ Impedance matching
/ Manganese dioxide
/ Materials Science
/ Microscopy
/ Microwave absorption
/ Optical and Electronic Materials
/ Oxidation
/ Physics
/ Spectrum analysis
/ Thickness
/ Vibration
2023
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Novel hollow urchin-like α/γ-MnO2 boost microwave absorption
Journal Article
Novel hollow urchin-like α/γ-MnO2 boost microwave absorption
2023
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Overview
The synthesis of novel structural materials is one of the hot topics in advanced materials. Herein, the hollow urchin-like structure of manganese dioxide (MnO
2
) was synthesized via a one-step hydrothermal strategy, demonstrating exceptional microwave absorption properties. The multiphase MnO
2
has a hollow urchin-like structure composed of α-MnO
2
and γ-MnO
2
, which exhibits outstanding impedance matching characteristics and favorable attenuation abilities. In the frequency range of 2–18 GHz, the hollow urchin-like α/γ-MnO
2
presents excellent microwave absorption with the minimum reflection loss (
RL
min
) of − 53.3 dB at 14.17 GHz with a thickness of only 1.9 mm, and the corresponding effective absorption bandwidth (EAB) can reach 5.45 GHz at the same thickness. Meanwhile, the hollow urchin-like α/γ-MnO
2
shows a practical microwave absorption capacity of approximately with EAB of 4.97 GHz at the ultrathin thickness of 1.5 mm via adjusting absorbent concentration. This study confirms the exceptional performance of the material in terms of its microwave absorption, providing valuable insights for the development of environmentally friendly, cost-effective, and high-performance materials.
Publisher
Springer US,Springer Nature B.V
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