MOFs-Derived Strategy and Ternary Alloys Regulation in Flower-Like Magnetic-Carbon Microspheres with Broadband Electromagnetic Wave Absorption

被引:0
|
作者
Mengqiu Huang [1 ]
Bangxin Li [2 ]
Yuetong Qian [3 ]
Lei Wang [4 ]
Huibin Zhang [3 ]
Chendi Yang [1 ]
Longjun Rao [1 ]
Gang Zhou [1 ]
Chongyun Liang [2 ]
Renchao Che [1 ,5 ,6 ]
机构
[1] Laboratory of Advanced Materials, Shanghai Key Lab of Molecular Catalysis and Innovative Materials, Academy for Engineering & Technology, Fudan University
[2] Department of Chemistry, Fudan University
[3] Materials Genome Institute, Shanghai University
[4] School of Materials Science and Engineering, Shanghai Institute of Technology
[5] College of Physics, Donghua University
[6] Zhejiang
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中图分类号
TB34 [功能材料];
学科分类号
080501 ;
摘要
Broadband electromagnetic(EM) wave absorption materials play an important role in military stealth and health protection. Herein, metal–organic frameworks(MOFs)-derived magnetic-carbon CoNiM@C(M = Cu, Zn, Fe, Mn) microspheres are fabricated, which exhibit flower-like nano–microstructure with tunable EM response capacity. Based on the MOFs-derived CoNi@C microsphere, the adjacent third element is introduced into magnetic CoNi alloy to enhance EM wave absorption performance. In term of broadband absorption, the order of efficient absorption bandwidth(EAB) value is Mn > Fe = Zn > Cu in the CoNiM@C microspheres. Therefore,MOFs-derived flower-like CoNiMn@C microspheres hold outstanding broadband absorption and the EAB can reach up to 5.8 GHz(covering 12.2–18 GHz at 2.0 mm thickness). Besides, off-axis electron holography and computational simulations are applied to elucidate the inherent dielectric dissipation and magnetic loss. Rich heterointerfaces in CoNiMn@C promote the aggregation of the negative/positive charges at the contacting region,forming interfacial polarization. The graphitized carbon layer catalyzed by the magnetic CoNiMn core offered the electron mobility path,boosting the conductive loss. Equally importantly, magnetic coupling is observed in the CoNiMn@C to strengthen the magnetic responding behaviors. This study provides a new guide to build broadband EM absorption by regulating the ternary magnetic alloy.
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页码:489 / 503
页数:15
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