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Stretchable reflective coating for soft optical waveguides and sensors

Simone Lantean, Matteo Lo Preti, Lucia Beccai

Year
2022
Citations
13
Access
Open access

Abstract

concentration and film thickness. Finally, two proof-of-concepts are demonstrated, a soft waveguide and a soft strain sensor, by integrating the developed material to shield a transparent PDMS resin and a semi-transparent Ecoflex00-10 matrix, respectively. The soft waveguide can stretch up to 40% with very low optical loss, while the optical strain sensor can detect strain up to 90%. In both cases, bending, folding, and indentation of the devices have a significantly low impact on light transmission. These results can pave the way to design new optical transmission devices and sensors that exploit light reflection and that allow for discriminating different types of mechanical stimuli in soft robots.

Keywords

Materials scienceCoatingIndentationElectromagnetic shieldingSiliconeBendingComposite numberComposite materialOptoelectronicsOptics

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