Articles with "wrinkling microstructures" as a keyword



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Multifunctional Ionic Conductive Anisotropic Elastomers with Self-Wrinkling Microstructures by In Situ Phase Separation.

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Published in 2023 at "ACS applied materials & interfaces"

DOI: 10.1021/acsami.3c04187

Abstract: Multifunctional flexible sensors are the development trend of wearable electronic devices in the future. As the core of flexible sensors, the key is to construct a stable multifunctional integrated conductive elastomer. Here, ionic conductive elastomers… read more here.

Keywords: self wrinkling; phase separation; ionic conductive; situ phase ... See more keywords
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Stretchable solvent-free ionic conductor with self-wrinkling microstructures for ultrasensitive strain sensor.

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Published in 2022 at "Materials horizons"

DOI: 10.1039/d2mh00109h

Abstract: Stretchable solvent-free ionic conductors with outstanding physicochemical stability are attractive in emerging sensing devices. However, existing ionic conductors struggle to keep high strain sensitivity with a gauge factor (GF) smaller than 4 at a strain… read more here.

Keywords: solvent free; strain; wrinkling microstructures; ionic conductor ... See more keywords