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

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

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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  • Language:
  • English
  • ISBN:
  • 9789811910715
  • Binding:
  • Paperback
  • Pages:
  • 156
  • Published:
  • March 25, 2023
  • Edition:
  • 23001
  • Dimensions:
  • 155x9x235 mm.
  • Weight:
  • 248 g.
Delivery: 2-4 weeks
Expected delivery: November 24, 2024

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

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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