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作 者:Xiao Li Wenbin You Chunyang Xu Lei Wang Liting Yang Yuesheng Li Renchao Che
机构地区:[1]Laboratory of Advanced Materials,Shanghai Key Lab of Molecular Catalysis and Innovative Materials,Fudan University,Shanghai 200438,People’s Republic of China [2]Department of Materials Science,Fudan University,Shanghai 200438,People’s Republic of China
出 处:《Nano-Micro Letters》2021年第10期252-265,共14页纳微快报(英文版)
基 金:supported by the National Natural Science Foundation of China(51725101,11727807,51672050,61790581);the Ministry of Science and Technology of China(2018YFA0209102)。
摘 要:Ti_(3)C_(2)Tx MXene is widely regarded as a potential micro-wave absorber due to its dielectric multi-layered structure.However,missing magnetic loss capability of pure MXene leads to the unmatched electromagnetic parameters and unsatisfied impedance matching condi-tion.Herein,with the inspiration from dielectric-magnetic synergy,this obstruction is solved by fabricating magnetic CNTs/Ni hetero-structure decorated MXene substrate via a facile in situ induced growth method.Ni2+ions are successfully attached on the surface and interlamination of each MXene unit by intensive electrostatic adsorption.Benefiting from the possible“seed-germination”effect,the“seeds”Ni^(2+)grow into“buds”Ni nanoparticles and“stem”carbon nanotubes(CNTs)from the enlarged“soil”of MXene skeleton.Due to the improved impedance matching con-dition,the MXene-CNTs/Ni hybrid holds a superior microwave absorp-tion performance of−56.4 dB at only 2.4 mm thickness.Such a distinctive 3D architecture endows the hybrids:(i)a large-scale 3D magnetic coupling network in each dielectric unit that leading to the enhanced magnetic loss capability,(ii)a massive multi-heterojunction interface structure that resulting in the reinforced polarization loss capability,confirmed by the off-axis electron holography.These outstanding results provide novel ideas for developing magnetic MXene-based absorbers.
关 键 词:Microwave absorption Two-dimensional materials MXene Magnetic coupling network Synergistic effect
分 类 号:TB34[一般工业技术—材料科学与工程]
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