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Hierarchically Porous Bio-Carbon Based Composites for High Electromagnetic Shielding Performance

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  • 152pages
  • 6 heures de lecture

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This book highlights the preparation and characterization of efficient electromagnetic shielding composites containing bio-carbon derived from natural loofah with unique three-dimensional porous structures by means of entire structure design of composites according to shielding theory. The synergistic effect of multifunctional nanoparticles and bio-carbon on electromagnetic shielding mechanism, mechanical performance, and thermal stability of composites obtained has been holistically investigated. The discovery of this renewable, environmentally friendly, and inexpensive bio-carbon represents a new class of conductive materials with multi-interfaces and unravels further research and development of a wide variety of new electromagnetic shielding material systems with potential commercial applications ranging from electronic devices to energy management.​

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Hierarchically Porous Bio-Carbon Based Composites for High Electromagnetic Shielding Performance, Dongyan Liu, Songtao Li, Zhengwang Zhu, Dong Yulan

Langue
Année de publication
2022
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Titre
Hierarchically Porous Bio-Carbon Based Composites for High Electromagnetic Shielding Performance
Langue
Anglais
Éditeur
Springer
Publié
2022
Format
rigide
Pages
152
ISBN10
9811910685
ISBN13
9789811910685
Séries
Description
This book highlights the preparation and characterization of efficient electromagnetic shielding composites containing bio-carbon derived from natural loofah with unique three-dimensional porous structures by means of entire structure design of composites according to shielding theory. The synergistic effect of multifunctional nanoparticles and bio-carbon on electromagnetic shielding mechanism, mechanical performance, and thermal stability of composites obtained has been holistically investigated. The discovery of this renewable, environmentally friendly, and inexpensive bio-carbon represents a new class of conductive materials with multi-interfaces and unravels further research and development of a wide variety of new electromagnetic shielding material systems with potential commercial applications ranging from electronic devices to energy management.​