A versatile N-doped honeycomb-like carbonaceous aerogels loaded with bimetallic sulfide and oxide for superior electromagnetic wave absorption and supercapacitor applications

被引:56
作者
Song, Guilin [1 ]
Gai, Lixue [1 ]
Yang, Keke [1 ]
Wang, Xuting [1 ]
An, Qingda [1 ]
Xiao, Zuoyi [1 ]
Zhai, Shangru [1 ]
机构
[1] Dalian Polytech Univ, Fac Light Ind & Chem Engn, Dalian 116034, Peoples R China
基金
中国国家自然科学基金;
关键词
Electromagnetic wave absorption; Supercapacitor; Heterogeneous interface; Double attenuation mechanism; Chitosan-derived materials; REDUCED GRAPHENE OXIDE; MICROWAVE-ABSORPTION; POROUS CARBON; ORGANIC FRAMEWORK; NANOTUBE COMPOSITES; NANOSHEET ARRAYS; PERFORMANCE; BIOMASS; SHELL; LIGHTWEIGHT;
D O I
10.1016/j.carbon.2021.05.044
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Electromagnetic pollution and electrochemical energy consumption have driven enormous endeavors in electromagnetic wave absorption materials and energy storage devices, however, designing versatile composites for addressing the issue remains a huge challenge. Herein, a versatile honeycomb-like N-doped carbon/bimetallic sulfide and oxide (N-CoFe2O4-CoxSy/FexSy@C) composites aerogel was designed via a simple mechanical mixing, freeze-drying and heat treatment method. As-prepared NeCoFe2O4-CoxSy/FexSy@C composites exhibited excellent electromagnetic wave absorption and electrochemical performances. The minimum RL can reach -51.9 dB at 15.5 GHz, with an effective frequency bandwidth (RL < -10 dB) of 4.01 GHz (13.73-17.74 GHz) at a thickness of 1.5 mm, these remarkable properties were originated from the abundance dipole/interfacial polarization along with multiple magnetic attenuation process. More importantly, an outstanding specific capacitance of 2883 F g(-1) at 1 A g(-1) and excellent cycling stability of 89.5% after 5000 cycles were also achieved, which is ascribed to the affluent active sites and well-defined hetero-architecture. Considering the novel NeCoFe2O4-CoxSy/FexSy@C composites aerogel possessing a unique blend of excellent electromagnetic wave absorber and supercapacitors electrodes, these multifunctional features would be highly promising for the next-generation environmental remediating materials. (C) 2021 Elsevier Ltd. All rights reserved.
引用
收藏
页码:335 / 347
页数:13
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