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Application of yolk-shell Fe3O4@N-doped carbon nanochains as highly effective microwave-absorption material 被引量:30
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作者 Mingtao Qiao xingfeng lei +4 位作者 Yong Ma Lidong Tian Xiaowei He Kehe Su Qiuyu Zhang 《Nano Research》 SCIE EI CAS CSCD 2018年第3期1500-1519,共20页
Yolk-shell Fe3O4@N-doped carbon nanochains, intended for application as a novel microwave-absorption material, have been constructed by a three-step method. Magnetic-field-induced distillation-precipitation polymeriza... Yolk-shell Fe3O4@N-doped carbon nanochains, intended for application as a novel microwave-absorption material, have been constructed by a three-step method. Magnetic-field-induced distillation-precipitation polymerization was used to synthesize nanochains with a one-dimensional (1D) structure. Then, a polypyrrole shell was uniformly applied to the surface of the nanochains through oxidant-directed vapor-phase polymerization, and finally the pyrolysis process was completed. The obtained products were characterized by X-ray diffraction (XRD), X-ray photoelectron spectra (XPS), and thermogravimetric analyses (TGA) to confirm the compositions. The morphology and microstructure were observed using an optical microscope, scanning electron microscope (SEM), and transmission electron microscope (TEM). The N2 absorption-desorption isotherms indicate a Brunauer-Emmett-Teller (BET) specific surface area of 74 m^2/g and a pore width of 5-30 nm. Investigations of the microwave absorption performance indicate that paraffin-based composites loaded with 20wt.% yolk-shell Fe3O4@N-doped carbon nanochains possess a minimum reflection loss of -63.09 dB (11.91 GHz) and an effective absorption bandwidth of 5.34 GHz at a matching layer thickness of 3.1 mm. In addition, by tailoring the layer thicknesses, the effective absorption frequency bands can be made to cover most of the C, X, and Ku bands. By offering the advantages of stronger absorption, broad absorption bandwidth, low loading, thin layers, and intrinsic light weight, yolk-shell Fe3O4@N-doped carbon nanochains will be excellent candidates for practical application to microwave absorption. An analysis of the microwave absorption mechanism reveals that the excellent microwave absorption performance can be explained by the quarter-wavelength cancellation theory, good impedance matching, intense conductive loss, multiple reflections and scatterings, dielectric loss, magnetic loss, and microwave plasma loss. 展开更多
关键词 yolk-shelLna nochains FE3O4 POLYPYRROLE N-doped carbon microwave absorption
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Synthesis of PS/Ag asymmetric hybrid particles via phase separation and self-assembly 被引量:1
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作者 Xinlong Fan Qiuyu Zhang +4 位作者 Hepeng Zhang Baoliang Zhang Chunmei Li Xiangjie Li xingfeng lei 《Particuology》 SCIE EI CAS CSCD 2013年第6期768-775,共8页
This article presents a facile approach to preparation of polystyrene/silver (PS/Ag) asymmetric hybrid par- ticles. In this method, polystyrene/polyglycidyl methacrylate (PS/PGMA) Janus particles were synthesized ... This article presents a facile approach to preparation of polystyrene/silver (PS/Ag) asymmetric hybrid par- ticles. In this method, polystyrene/polyglycidyl methacrylate (PS/PGMA) Janus particles were synthesized via internal phase separation triggered by evaporation of dichloromethane (DCM) from PS/PGMA/DCM- in water emulsion droplets. Then, the Janus particles were aminated and sequentially carboxylated to obtain PS/PGMA-NH2 and PS/PGMA-COOH particles. Ag+ self-assembled on the surface of PGMA hemi- sphere of the functionalized PS/PGMA particles by coordinating with amine/carboxyl. PS/Ag asymmetric hybrid particles with 7.29 wt% of Ag were obtained by reduction of Ag+, Scanning electron microscopy, energy-dispersive X-ray spectroscopy and transmission electron microscopy results confirmed that Ag was asymmetrically distributed on the surface of polymer particles. 展开更多
关键词 Phase separation Interracial interaction Amination Carboxylation Coordination Self-assembly
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