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Crackle template based metallic mesh with highly homogeneous light transmission for high-performance transparent EMI shielding.


ABSTRACT: Our daily electromagnetic environment is becoming increasingly complex with the rapid development of consumer electronics and wireless communication technologies, which in turn necessitates the development of electromagnetic interference (EMI) shielding, especially for transparent components. We engineered a transparent EMI shielding film with crack-template based metallic mesh (CT-MM) that shows highly homogeneous light transmission and strong microwave shielding efficacy. The CT-MM film is fabricated using a cost-effective lift-off method based on a crackle template. It achieves a shielding effectiveness of ~26?dB, optical transmittance of ~91% and negligible impact on optical imaging performance. Moreover, high-quality CT-MM film is demonstrated on a large-calibre spherical surface. These excellent properties of CT-MM film, together with its advantages of facile large-area fabrication and scalability in processing on multi-shaped substrates, make CT-MM a powerful technology for transparent EMI shielding in practical applications.

SUBMITTER: Han Y 

PROVIDER: S-EPMC4858675 | biostudies-literature | 2016 May

REPOSITORIES: biostudies-literature

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Crackle template based metallic mesh with highly homogeneous light transmission for high-performance transparent EMI shielding.

Han Yu Y   Lin Jie J   Liu Yuxuan Y   Fu Hao H   Ma Yuan Y   Jin Peng P   Tan Jiubin J  

Scientific reports 20160506


Our daily electromagnetic environment is becoming increasingly complex with the rapid development of consumer electronics and wireless communication technologies, which in turn necessitates the development of electromagnetic interference (EMI) shielding, especially for transparent components. We engineered a transparent EMI shielding film with crack-template based metallic mesh (CT-MM) that shows highly homogeneous light transmission and strong microwave shielding efficacy. The CT-MM film is fab  ...[more]

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