硕士生导师
教师拼音名称:zhangmeng
出生日期:1984-03-15
入职时间:2014-09-10
所在单位:无机非金属材料教研室
学历:博士研究生
性别:男
联系方式:13792436574
学位:工学博士
学科:材料学
最后更新时间:..
关键字:Reduced Graphene Oxide;Fillers - Graphene - Iron compounds - Microwaves - Nanospheres
摘要:Facing the increasingly serious electromagnetic radiation, synthesis of graphene-containing microwave absorber with strong reflection loss (RL) and broad effective absorption bandwidth (EAB) have attracted tremendous interest due to their potential application in various areas. Herein, CoFe<inf>2</inf>O<inf>4</inf>@rGO hybrid nanocomposites composed of reduced graphene oxide (rGO) and embedded CoFe<inf>2</inf>O<inf>4</inf> nanospheres were synthesized through an one-step solvothermal strategy. Enhanced microwave absorption properties of the nanocomposites with different CoFe<inf>2</inf>O<inf>4</inf> nanospheres contents were investigated systematically, the RL value as well as the corresponding EAB could be effectively tuned by adjusting the filler contents of CoFe<inf>2</inf>O<inf>4</inf>@rGO hybrid nanocomposites. Remarkably, the minimal RL value of −67.58 dB accompanying with the corresponding EAB of 6.3 GHz (almost covering the whole Ku band) and the minimal RL value of −55.70 dB accompanying with the EAB of 4.0 GHz (almost covering the whole X band) can be achieved by the optimal sample with 10 wt% filler content at 2.1 mm and 2.7 mm matching thickness, respectively. The synergistic effect of impedance matching, hybrid microstructure together with various loss mechanisms are of crucial significance to enhance the absorption performances. The results suggest that the hybrid nanocomposites can serve as a promising lightweight and high-efficiency candidate absorber, and the simple synthesis technique gives a valuable clue for obtaining ideal microwave absorber.<br/> © 2020 Elsevier Ltd
卷号:190
期号:-
是否译文:否