Developed by Northwestern Engineering’s Igor Efimov and George Washington University’s Luyao Lu, the implantable device uses ...
Enhanced bonding performance: Reliable adhesion to TPE materials, especially TPE-S and TPE-O, ensuring robust and durable ...
“Printed electronics allows us to create conductive circuits that are thin, flexible, and capable of ... Additionally, temperature-sensitive sensors, printed on Kapton material, enable real ...
Abstract: Conventional wireless passive surface acoustic wave (SAW) strain sensors often employ rigid materials, limiting their application on curved surfaces. This paper presents a fully flexible ...
Conductive hydrogels, with their unique combination of electrical conductivity and stretchability, are emerging as critical components for next-generation, flexible, and wearable sensors. In this work ...
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