会员登录|免费注册|忘记密码|管理入口 返回主站||保存桌面|手机浏览|联系方式|购物车
企业会员第1年

苏州碳丰石墨烯科技有限公司  

高纯度99.9纳米氮化硼粉末石墨烯碳纳米管复合水性超强导电涂料石墨烯碳纳米管复合水性散热涂料纳米金溶液石墨烯导电银浆99.9%升华提纯富勒烯C60

搜索
新闻中心
商品分类
  • 暂无分类
联系方式


请先 登录注册 后查看


站内搜索
 
荣誉资质
  • 暂未上传
友情链接
  • 暂无链接
首页 > 方案案例 > Fabrication of ferroferric oxide–carbon/reduced graphene oxide nanocomposites derived from Fe-based
方案案例
Fabrication of ferroferric oxide–carbon/reduced graphene oxide nanocomposites derived from Fe-based
2025-11-15IP属地 未知0

Fabrication of ferroferric oxide–carbon/reduced graphene oxide nanocomposites derived from Fe-based metal–organic frameworks for microwave absorption

Abstract

Microwave absorbers with strong absorption, broad bandwidth, thin thickness and low filler loading are highly desirable in electromagnetic absorption field. In this work, ferroferric oxide–carbon/reduced graphene oxide (Fe3O4–C/RGO) nanocomposites were fabricated by a facile solvothermal and high-temperature pyrolysis two-step strategy. Results of morphology observations demonstrated that numerous carbon frameworks with unique octahedral morphology were uniformly loaded on the crumpled surfaces of thinly flake-like RGO, and that well-designed entanglement structure consisting of octahedral carbon frameworks and crumpled RGO was observed in the as-prepared nanocomposites. Moreover, the effects of additive amounts of graphene oxide and filler loadings on the electromagnetic parameters and microwave absorption properties of as-synthesized nanocomposites were elaborately investigated. Remarkably, the obtained nanocomposites with an additive amount of graphene oxide of 2.43 wt% displayed the minimum reflection loss of −60.5 dB at 4.8 GHz with a matching thickness of 3.6 mm and effective absorption bandwidth (reflection loss less than −10 dB) of 5.5 GHz (from 11.2 to 16.7 GHz) with an ultrathin thickness of merely 1.5 mm. Besides, the possible microwave absorption mechanisms were proposed. This work could shed light on designing and fabricating carbon-based magnetic nanocomposites as lightweight and high-performance microwave absorbers.