2021
DOI: 10.1002/adfm.202108194
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Initiating VB‐Group Laminated NbS2 Electromagnetic Wave Absorber toward Superior Absorption Bandwidth as Large as 6.48 GHz through Phase Engineering Modulation

Abstract: VB-Group transition metal disulfides (TMDs) are considered excellent materials for electromagnetic wave (EMW) absorption because of their good conductivity and abundant active sites located at their edges and substrates, as compared with VIB-Group TMDs. Herein, for the first time, EMW absorbers based on VB-Group NbS 2 nanosheets by using a facile one-step solvothermal method are successfully prepared. The minimum reflection loss (RL min ) can reach up to 43.85 dB with an effective absorption bandwidth of 6.48 … Show more

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Cited by 188 publications
(90 citation statements)
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“…5 g), will displace the local electron density and trigger dielectric dipole oscillations [ 49 ], resulting in enhanced dipolar polarization. Besides, because of the compatibility between Co and Co 3 O 4 with same cubic phases, the transformation promotes the phase hybridization with coherent interfaces [ 50 , 51 ]. Combining with heterojunctions and hierarchical pores, strong interfacial polarization can be achieved, which are expressed by the typical Lorentz off-axis electron holograms in Fig.…”
Section: Resultsmentioning
confidence: 99%
“…5 g), will displace the local electron density and trigger dielectric dipole oscillations [ 49 ], resulting in enhanced dipolar polarization. Besides, because of the compatibility between Co and Co 3 O 4 with same cubic phases, the transformation promotes the phase hybridization with coherent interfaces [ 50 , 51 ]. Combining with heterojunctions and hierarchical pores, strong interfacial polarization can be achieved, which are expressed by the typical Lorentz off-axis electron holograms in Fig.…”
Section: Resultsmentioning
confidence: 99%
“…[23] Thirdly, paragenesis of Mo 2 C grains in SiC/C NFs causes abundant defects, which can lead to more dipole polarization. [11,45] Moreover, good impedance matching and quarter-wavelength thickness for the sample are conducive to the excellent performance. [46] In view of the above state, the enhancement performance for Mo-SiC/C NFs is attributed to multiple loss paths including conductive loss, interfacial polarization, and dipole polarization, as well as good impedance matching and quarter-wavelength cancellation.…”
Section: Em Parameters and Em Wave Absorption Propertiesmentioning
confidence: 99%
“…Besides, the multiphase structure and high conductivity of the magnetic nanoparticles, increased multiple reflection loss, improved dielectric properties and impedance matching in the materials. [46,47]…”
Section: Magnetization Analysismentioning
confidence: 99%