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Работы, на которые ссылается эта работа

Работ: 60

Работа: Conductive Cellulose-Based Fibers for Electromagnetic Wave Absorption, Pressure Sensing, and Antibacterial Activity

  1. State of the Art of Carbon Nanotube Fibers: Opportunities and Challenges

    Weibang Lu, Mei Zu, Joon‐Hyung Byun +2

    Обзорная статья2012Цитирований: 3
    ABI
  2. Engineering a Copper@Polypyrrole Nanowire Network in the Near Field for Plasmon-Enhanced Solar Evaporation

    Wei Wang, Xiaoqing Yan, Jiafeng Geng +7

    Статья2021Цитирований: 2
    ABI
  3. A Nanocellulose Polypyrrole Composite Based on Microfibrillated Cellulose from Wood

    Gustav Nyström, Albert Mihranyan, Aamir Razaq +3

    Статья2010Цитирований: 2
    ABI
  4. Surface Electric Properties of Polypyrrole in Aqueous Solutions

    X. Zhang, Renbi Bai

    Статья2003Цитирований: 2
    ABI
  5. One-step surface modification of multi-walled carbon nanotubes by pyrrole

    Shinian Liu, Cheng Wang, Zengfu Wei +4

    Статья2014Цитирований: 2
    ABI
  6. Microstructure, distribution and properties of conductive polypyrrole/cellulose fiber composites

    Haihua Wang, Naravit Leaukosol, Zhibin He +3

    Статья2013Цитирований: 2
    ABI
  7. Influence of oil contamination on the optical performance and laser induced damage of fused silica

    Liming Yang, Xia Xiang, Xinxiang Miao +6

    Статья2015Цитирований: 2
    ABI
  8. Overview of carbon nanostructures and nanocomposites for electromagnetic wave shielding

    Chao Wang, Vignesh Murugadoss, Jie Kong +8

    Статья2018Цитирований: 2
    ABI
  9. Nanotubular polypyrrole: Reversibility of protonation/deprotonation cycles and long-term stability

    Ján Prokeš, Martin Varga, Martin Vrňata +3

    Статья2019Цитирований: 2
    ABI
  10. Deep understanding of impedance matching and quarter wavelength theory in electromagnetic wave absorption

    Tao Wang, Geng Chen, Jiahao Zhu +3

    Обзорная статья2021Цитирований: 2
    ABI