首站-论文投稿智能助手
典型文献
Atomically Dispersed Ni Single-Atoms Anchored on N-Doped Graphene Aerogels for Highly Efficient Electromagnetic Wave Absorption
文献摘要:
Uniformly dispersed nickel single atoms(SAs)are experimentally prepared on ultralight N-doped graphene aero-gels(Ni-SA@NRGA).The experimental results show that Ni-SAs in graphene aerogels can improve the conduc-tion,polarization losses,and impedance matching properties of the Ni-SA@NRGA.As a result,the minimum reflection loss(RL,min)of Ni-SA@NRGA is-49.46 dB with a matching thickness of 2.0 mm and the broadest efficient absorption bandwidth is 3.12 GHz at a low thickness of 1.5 mm.Meanwhile,even with a matching thick-ness of 1.2-2.0 mm,the RL,min value of Ni-SA@NRGA can reach-20 dB.The current study demonstrates the significance of incorporating metal single atoms into graphene aerogel for electromagnetic wave absorption.
文献关键词:
作者姓名:
Bing Suo;Xiao Zhang;Xinyu Jiang;Feng Yan;Zhengzhi Luo;Yujin Chen
作者机构:
Key Laboratory of In-Fiber Integrated Optics(Ministry of Education),and College of Physics and Optoelectronic Engineering,Harbin Engineering University,Harbin 150001,China
引用格式:
[1]Bing Suo;Xiao Zhang;Xinyu Jiang;Feng Yan;Zhengzhi Luo;Yujin Chen-.Atomically Dispersed Ni Single-Atoms Anchored on N-Doped Graphene Aerogels for Highly Efficient Electromagnetic Wave Absorption)[J].中国物理快报(英文版),2022(04):22-38
A类:
NRGA
B类:
Atomically,Dispersed,Single,Atoms,Anchored,Doped,Graphene,Aerogels,Highly,Efficient,Electromagnetic,Wave,Absorption,Uniformly,dispersed,nickel,single,atoms,SAs,experimentally,prepared,ultralight,doped,graphene,results,show,that,aerogels,improve,conduc,polarization,losses,impedance,matching,properties,minimum,reflection,RL,dB,thickness,broadest,efficient,absorption,bandwidth,GHz,low,Meanwhile,even,value,reach,current,study,demonstrates,significance,incorporating,metal,into,electromagnetic,wave
AB值:
0.562171
相似文献
Layered Foam/Film Polymer Nanocomposites with Highly Efficient EMI Shielding Properties and Ultralow Reflection
Li Ma;Mahdi Hamidinejad;Biao Zhao;Caiyun Liang;Chul B.Park-Department of Mechanical and Industrial Engineering,University of Toronto,5 King's College Road,Toronto,ON M5S 3G8,Canada;Institute for Manufacturing,Department of Engineering,University of Cambridge,Cambridge CB30FS,UK;Laboratory of Advanced Materials,Department of Materials Science,Collaborative Innovation Center of Chemistry for Energy Materials,Fudan University,Shanghai 200438,People's Republic of China;Henan Key Laboratory of Aeronautical Materials and Application Technology,School of Material Science and Engineering,Zhengzhou University of Aeronautics,Zhengzhou,Henan 450046,People's Republic of China;CAS Key Laboratory of High-Performance Synthetic Rubber and Its Composite Materials,Changchun Institute of Applied Chemistry,Chinese Academy of Sciences,Changchun 130022,People's Republic of China
Ultralight Magnetic and Dielectric Aerogels Achieved by Metal-Organic Framework Initiated Gelation of Graphene Oxide for Enhanced Microwave Absorption
Xiaogu Huang;Jiawen Wei;Yunke Zhang;BinBin Qian;Qi Jia;Jun Liu;Xiaojia Zhao;Gaofeng Shao-Institute of Advanced Materials and Flexible Electronics(IAMFE),School of Chemistry and Materials Science,Nanjing University of Information Science and Technology,Nanjing 210044,People's Republic of China;Department of Chemical and Biological Engineering,Monash University,Victoria 3800,Australia;School of Chemistry and Environmental Engineering,Yancheng Teachers University,Yancheng 224002,People's Republic of China;College of Field Engineering,Army Engineering University of PLA,Nanjing 210007,People's Republic of China;Hebei Key Laboratory of Inorganic Nano-Materials,College of Chemistry and Materials Science,Hebei Normal University,Shijiazhuang 050024,People's Republic of China
Multifunctional SiC@SiO2 Nanofiber Aerogel with Ultrabroadband Electromagnetic Wave Absorption
Limeng Song;Fan Zhang;Yongqiang Chen;Li Guan;Yanqiu Zhu;Mao Chen;Hailong Wang;Budi Riza Putra;Rui Zhang;Bingbing Fan-School of Materials Science and Engineering,Zhengzhou University,Zhengzhou 450001,Henan,People's Republic of China;School of Materials Science and Engineering,Zhengzhou University of Aeronautics,Zhengzhou 450015,Henan,People's Republic of China;College of Engineering,Mathematics and Physical Sciences,University of Exeter,Exeter EX4 4SB,UK;Research Center for Metallurgy,National Research and Innovation Agency,South Tangerang 15315,Banten,Indonesia;School of Materials Science and Engineering,Luoyang Institute of Science and Technology,Luoyang 471023,Henan,People's Republic of China;State Key Laboratory of Crystal Materials,Shandong University,Jinan 250100,Shandong,People's Republic of China
Achieving Ultra-Wideband and Elevated Temperature Electromagnetic Wave Absorption via Constructing Lightweight Porous Rigid Structure
Zibao Jiao;Wenjun Huyan;Feng Yang;Junru Yao;Ruiyang Tan;Ping Chen;Xuewei Tao;Zhengjun Yao;Jintang Zhou;Peijiang Liu-College of Materials Science and Technology,Nanjing University of Aeronautics and Astronautics,Nanjing 211100,People's Republic of China;Key Laboratory of Material Preparation and Protection for Harsh Environment(Nanjing University of Aeronautics and Astronautics),Ministry of Industry and Information Technology,Nanjing 211100,People's Republic of China;School of Electronic Science and Engineering,Nanjing University,Nanjing 210023,People's Republic of China;School of Materials Science and Engineering,Nanjing Institute of Technology,Nanjing 211167,People's Republic of China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。