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期刊信息
  • 主管单位:
  • 中国科学技术协会
  • 主办单位:
  • 中国仪器仪表学会、上海光学仪器研究所、中国光学学会工程光学专业委员会
  • 主  编:
  • 庄松林
  • 地  址:
  • 上海市军工路516号上海理工大学《光学仪器》编辑部
  • 邮政编码:
  • 200093
  • 联系电话:
  • 021-55270110
  • 电子邮件:
  • gxyq@usst.edu.cn
  • 国际标准刊号:
  • 1005-5630
  • 国内统一刊号:
  • 31-1504/TH
  • 邮发代号:
  • 单  价:
  • 15.00
  • 定  价:
  • 90.00
AuCl3掺杂石墨烯的电磁屏蔽特性研究
Research on electromagnetic shielding propertites of AuCl3 doped graphene
投稿时间:2014-06-13  
DOI:10.3969/j.issn.1005-5630.2014.05.014
中文关键词:  石墨烯  化学气相沉积  掺杂  传输线理论  屏蔽效能
英文关键词:graphene  CVD  doping  transmission line method  SE
基金项目:
作者单位E-mail
周全 军械工程学院 电子与光学工程系, 河北 石家庄 050003  
汪岳峰 军械工程学院 电子与光学工程系, 河北 石家庄 050003 WYF_oec@sina.com 
魏大鹏 重庆绿色智能技术研究院, 重庆 400714  
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中文摘要:
      石墨烯因具备宽波段高透光性和良好的导电性而有望成为光学窗口的电磁屏蔽材料.采用AuCl3掺杂方式增加少层石墨烯薄膜的载流子浓度,降低表面电阻值.并通过拉曼光谱对掺杂前后石墨烯薄膜进行表征、对比,得到石墨烯薄膜层数、缺陷、掺杂类型及连续性方面的信息.利用各向异性介质的平面波传输线模型,着重考虑化学势对石墨烯电导率的影响,得到宽波段掺杂石墨烯的屏蔽效能曲线.实验采用屏蔽室法对转移在PET表面的石墨烯薄膜进行屏蔽效能测试,结果表明寡层(1~2层)掺杂石墨烯的平均屏蔽效能在6.7 dB左右,与计算值符合较好.
英文摘要:
      Graphene with high transmittance and great conductivity at wide band is expected to be the electromagnetic shielding materials for optical widows. At present, a large area of monolayer and bi-layer graphene was prepared by the method of chemical vapor deposition (CVD). In this way, graphene has low carrier concentration and surface grain boundary effect, which is hard to meet the actual demand of shielding. This paper we use AuCl3 doped graphene to improve carrier concentration and reduce the surface resistance. Using Raman spectroscopy to measure multi points on sample surface, we obtained the situation of intrinsic and doped graphene layers, defects, doping type and continuity. Considering the influence of chemical potential on the graphene conductivity, the shielding effectiveness (SE) can be derived by the anisotropic medium plan wave transmission line model. The experiment which refers to the GJB standard is carried out on the shielding effectiveness of intrinsic and doped graphene. The result suggests that graphene films transferred on PET have average SE at about 6.7 dB, and the theoretical prediction agrees with the measured characteristics well.
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