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Ultrathin epidermal strain sensor based on an elastomer nanosheet with an inkjet-printed conductive polymer

Yuma Tetsu, Kento Yamagishi, Akira Kato, Yuya Matsumoto, Mariko Tsukune, Yo Kobayashi, Masakatsu G. Fujie, Shinji Takeoka, Toshinori Fujie

Year
2017
Citations
53

Abstract

To minimize the interference that skin-contact strain sensors cause natural skin deformation, physical conformability to the epidermal structure is critical. Here, we developed an ultrathin strain sensor made from poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) (PEDOT:PSS) inkjet-printed on a polystyrene–polybutadiene–polystyrene (SBS) nanosheet. The sensor, whose total thickness and gauge factor were ∼1 µm and 0.73 ± 0.10, respectively, deeply conformed to the epidermal structure and successfully detected the small skin strain (∼2%) while interfering minimally with the natural deformation of the skin. Such an epidermal strain sensor will open a new avenue for precisely detecting the motion of human skin and artificial soft-robotic skin.

Keywords

PEDOT:PSSMaterials scienceGauge factorPolystyreneElastomerNanosheetComposite materialDeformation (meteorology)PolymerHuman skin

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