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Super-adhesive sensor based on amylopectin-polyacrylic acid hydrogel for deep learning-assisted sign language
Zhongyang Cao1, Jun Ji1, Ziteng Wang1
1School of Materials Science and Engineering, Key Laboratory of Materials Processing and Mold, (Zhengzhou University), Ministry of Education; Zhengzhou University, Zhengzhou 450001, PR China.
Abstract:
Flexible wearable electronic devices have garnered substantial research attention and emerged as a pivotal technology across diverse domains, ranging from healthcare monitoring to human-machine interaction. Despite significant advancements in flexible wearable electronic devices, their further application in advanced fields remains limited by poor adhesion and unstable performance. Hydrogels, as soft materials with three-dimensional cross-linked networks, possess inherent advantages that make them promising candidates for addressing these challenges. To comprehensively tackle the challenges, polyacrylic acid /tannic acid /amylopectin (PATA) hydrogels were rationally designed by tuning their composition and network architecture. The resulting PATA hydrogel integrates multiple desirable properties, including superior toughness (431.199 kJ m-3), high gauge factor (GF = 3.24), enhanced electrical conductivity (14.58 mS m-1), and strong adhesion to diverse surfaces (89.91 kPa). Moreover, the PATA hydrogel demonstrates remarkable capability in accurately detecting and distinguishing signals from various sources, demonstrating its versatility for communication and monitoring applications. Notably, it can be seamlessly integrated into a deep learning-assisted sign language recognition system, enabling efficient and reliable signal conversion. This innovation provides a robust foundation for bridging the communication gap between deaf-mute individuals and the hearing community.
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