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A 2.5 Gbps optical transceiver module fabricated by ionic liquid (IL)-dispersed multi-wall carbon nanotube (MWCNT) composites is demonstrated. In comparison with shielding effectiveness (SE) measurements without dispersion, IL- dispersed MWCNT composites exhibited high SE of 40-46 dB at lower weight percentage of MWCNTs. Ionic charge force and alkyl groups interaction in the IL-MWCNT hybrid solution...
A novel polyimide film, consisting of finely dispersed multiwall carbon nanotubes (MWCNTs) in an ionic liquid (IL), is demonstrated to be high shielding effectiveness (SE) for use in packaging a 2.5-Gbps plastic transceiver module. The IL-dispersed MWCNT composite exhibits a high SE of 40 ~ 46 dB. By comparison, the composite fabricated by nondispersive process requires a higher loading of MWCNTs...
Electromagnetic (EM) shielding performance for a plastic composite by employing polyimide-based dispersive multiwall carbon nanotubes (MWCNTs) is presented. A well-dispersed MWCNT composite offers a higher electrical conductivity with a lower weight percentage of MWCNTs. The dispersive MWCNT composites with their high shielding effectiveness (SE) are suitable for packaging low-cost optical transceiver...
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