Publication | Closed Access
Stiff, Thermally Stable and Highly Anisotropic Wood-Derived Carbon Composite Monoliths for Electromagnetic Interference Shielding
185
Citations
32
References
2017
Year
Materials ScienceThermal InsulationElectrical EngineeringEngineeringMulti-functional CompositeComposite TechnologyApplied PhysicsPoor Thermal StabilityContinuous-fibre CompositeNatural WoodElectrical InsulationElectromagnetic InterferenceComputational ElectromagneticsMaterial PerformanceThermally StableElectromagnetic Compatibility
Electromagnetic interference (EMI) shielding materials for electronic devices in aviation and aerospace not only need lightweight and high shielding effectiveness, but also should withstand harsh environments. Traditional EMI shielding materials often show heavy weight, poor thermal stability, short lifetime, poor tolerance to chemicals, and are hard-to-manufacture. Searching for high-efficiency EMI shielding materials overcoming the above weaknesses is still a great challenge. Herein, inspired by the unique structure of natural wood, lightweight and highly anisotropic wood-derived carbon composite EMI shielding materials have been prepared which possess not only high EMI shielding performance and mechanical stable characteristics, but also possess thermally stable properties, outperforming those metals, conductive polymers, and their composites. The newly developed low-cost materials are promising for specific applications in aerospace electronic devices, especially regarding extreme temperatures.
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