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Investigation on the optimization, design and microwave absorption properties of BaTb0.2Eu0.2Fe11.6O19/PANI decorated on reduced graphene oxide nanocomposites
by
Lu, Yue
, Yu, Ning
, Ji Hongru
, Luo Juhua
, Zhang, Kang
in
Design optimization
/ Electron microscopes
/ Field emission microscopy
/ Field emission spectroscopy
/ Fourier transforms
/ Graphene
/ Materials science
/ Microwave absorption
/ Nanocomposites
/ Raman spectroscopy
/ Spectrum analysis
/ Synergistic effect
2019
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Investigation on the optimization, design and microwave absorption properties of BaTb0.2Eu0.2Fe11.6O19/PANI decorated on reduced graphene oxide nanocomposites
by
Lu, Yue
, Yu, Ning
, Ji Hongru
, Luo Juhua
, Zhang, Kang
in
Design optimization
/ Electron microscopes
/ Field emission microscopy
/ Field emission spectroscopy
/ Fourier transforms
/ Graphene
/ Materials science
/ Microwave absorption
/ Nanocomposites
/ Raman spectroscopy
/ Spectrum analysis
/ Synergistic effect
2019
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Investigation on the optimization, design and microwave absorption properties of BaTb0.2Eu0.2Fe11.6O19/PANI decorated on reduced graphene oxide nanocomposites
by
Lu, Yue
, Yu, Ning
, Ji Hongru
, Luo Juhua
, Zhang, Kang
in
Design optimization
/ Electron microscopes
/ Field emission microscopy
/ Field emission spectroscopy
/ Fourier transforms
/ Graphene
/ Materials science
/ Microwave absorption
/ Nanocomposites
/ Raman spectroscopy
/ Spectrum analysis
/ Synergistic effect
2019
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Investigation on the optimization, design and microwave absorption properties of BaTb0.2Eu0.2Fe11.6O19/PANI decorated on reduced graphene oxide nanocomposites
Journal Article
Investigation on the optimization, design and microwave absorption properties of BaTb0.2Eu0.2Fe11.6O19/PANI decorated on reduced graphene oxide nanocomposites
2019
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Overview
A novel hybrid material with excellent microwave absorption property has been designed by decorating reduced graphene oxide with Ba Tb0.2Eu0.2Fe11.6O19/PANI composite, and the effect of graphene content on microwave absorption property has been investigated. The microstructure of the composite is characterized by X-ray diffraction, Fourier-transform infrared spectroscopy, field emission scanning electron microscope, transmission electron microscope and Raman spectroscopy. The mechanism of microwave absorption is discussed minutely. The result shows that the ternary nanocomposites demonstrate unexceptionable microwave absorption property due to its special nanostructures and synergistic effect among BaTb0.2Eu0.2Fe11.6O19, PANI and RGO. The minimum reflection loss can reach − 60.9 dB at 16.4 GHz with a thickness of only 1.95 mm, and the corresponding effective absorption bandwidth (below − 10 dB) is 4.2 GHz. BaTb0.2Eu0.2Fe11.6O19/PANI/RGO composite can be one of the most promising microwave absorption materials.
Publisher
Springer Nature B.V
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