TY - JOUR
T1 - A Flexible, Mechanically Strong, and Anti-Corrosion Electromagnetic Wave Absorption Composite Film with Periodic Electroconductive Patterns
AU - Zhao, Zehao
AU - Lan, Di
AU - Zhang, Limin
AU - Wu, Hongjing
N1 - Publisher Copyright:
© 2021 Wiley-VCH GmbH.
PY - 2022/4/11
Y1 - 2022/4/11
N2 - Demand for high-efficiency electromagnetic wave (EMW) absorption composite films continues to increase with technical advances in 5G telecommunications, wearable electronics, portable devices, and deployable military applications. However, realizing flexible ultra-thin single-layer EMW absorption composite films with multifunctionality, rather than using traditional particle absorbents, is a known challenge. In this study, the authors propose a series of polyimide (PI) reinforced composite films with periodic copper-based electroconductive units that possess tunable electrical properties for specific applications. These periodic units optimize the electric field distribution of the films in an alternating electromagnetic field, resulting in stronger power loss. Furthermore, the hierarchical structure and abundant heterogeneous interfaces of each unit contribute to multiple scattering and polarization loss. The obtained copper mesh@Cu2−xS@PI (CCP) film shows excellent EM shielding performance (63.7 dB), while the Air@Cu2−xS@PI (ACP) film delivers a superior specific absorbency value of 391.43% mm–1 in the X-band. Furthermore, owing to their mechanical properties, thermal conduction/dissipation performance, and excellent environmental stability characteristics, these films offer significant potential as high-performance EMW response materials with resistance to harsh conditions.
AB - Demand for high-efficiency electromagnetic wave (EMW) absorption composite films continues to increase with technical advances in 5G telecommunications, wearable electronics, portable devices, and deployable military applications. However, realizing flexible ultra-thin single-layer EMW absorption composite films with multifunctionality, rather than using traditional particle absorbents, is a known challenge. In this study, the authors propose a series of polyimide (PI) reinforced composite films with periodic copper-based electroconductive units that possess tunable electrical properties for specific applications. These periodic units optimize the electric field distribution of the films in an alternating electromagnetic field, resulting in stronger power loss. Furthermore, the hierarchical structure and abundant heterogeneous interfaces of each unit contribute to multiple scattering and polarization loss. The obtained copper mesh@Cu2−xS@PI (CCP) film shows excellent EM shielding performance (63.7 dB), while the Air@Cu2−xS@PI (ACP) film delivers a superior specific absorbency value of 391.43% mm–1 in the X-band. Furthermore, owing to their mechanical properties, thermal conduction/dissipation performance, and excellent environmental stability characteristics, these films offer significant potential as high-performance EMW response materials with resistance to harsh conditions.
KW - copper sulfide
KW - electromagnetic response
KW - multifunctionality
KW - periodic electroconductive patterns
KW - polyimides
UR - http://www.scopus.com/inward/record.url?scp=85122545463&partnerID=8YFLogxK
U2 - 10.1002/adfm.202111045
DO - 10.1002/adfm.202111045
M3 - 文章
AN - SCOPUS:85122545463
SN - 1616-301X
VL - 32
JO - Advanced Functional Materials
JF - Advanced Functional Materials
IS - 15
M1 - 2111045
ER -