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A multi-dimensional and level-by-level assembly strategy for constructing flexible and sandwich-type nanoheterostructures for high-performance electromagnetic interference shielding

Caichao Wan, Yue Jiao, Xianjun Li, Wenyan Tian, Jian Li, Yiqiang Wu

2020Nanoscale38 citationsDOI

Abstract

) can be bent, twisted and folded, revealing their excellent processability for commercial uses. More importanly, this novel structural design concept opens up an interesting promising research field of novel next-generation EMI shielding materials.

Topics & Concepts

Electromagnetic shieldingEMIElectromagnetic interferenceMaterials scienceInterference (communication)ISM bandConstruct (python library)Electronic engineeringComputer scienceComposite materialEngineeringTelecommunicationsWirelessChannel (broadcasting)Programming languageElectromagnetic wave absorption materialsAdvanced Antenna and Metasurface TechnologiesMXene and MAX Phase Materials
A multi-dimensional and level-by-level assembly strategy for constructing flexible and sandwich-type nanoheterostructures for high-performance electromagnetic interference shielding | Litcius