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A compact and flexible multiwalled carbon nanotubes (MWCNTs)-coated paper electrode was fabricated in this study. The shape of the paper electrode could be varied simply by cutting it. Further, its electrical resistance did not change appreciably either when it was bent with different curvatures or when it was subjected to repeated bending and stretching. An nanoscale energetic material (nEM)-on-MWCNTs...
Three-dimensionally interconnected carbon nanotubes (CNTs) in a vertically aligned CNT (vCNT) forest are potentially desirable for retaining their electrical functionality under various elastic deformations after being incorporated into elastomeric materials. Here, we report a class of highly stretchable and reliable elastic conductors based on the elastomer-infiltrated vCNT forest with micro-patternability...
Unique and inherent nano-roughened morphologies of vertically aligned carbon nanotube (VACNT) forests are desirable for mimicking biological superhydrophobic surface systems. In this paper, we report on a new class of robust dual-roughened superhydrophobic surfaces based on VACNT forests coated conformally with thin silicone. The vapor phase deposition of silicone considerably reduces the surface...
The micropatterning of conductive composites is of great importance for the integration of elastic conductors with functional micro-geometries in a stretchable platform. We present a simple and rapid micropatterning method for conductive composites that relies on single-step contact transfer printing (sCTP). A conductive polydimethylsiloxane (PDMS) composite is readily synthesized by dispersing conductive...
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