摩擦电效应
纳米发生器
材料科学
纳米技术
生物相容性
自愈水凝胶
聚乙烯醇
导电体
电压
人体运动
仿生材料
人工肌肉
智能材料
物联网
电解质
机械强度
导电的
柔性电子器件
灵敏度(控制系统)
手指敲击
纳米传感器
机电一体化
自愈
计算机科学
作者
Thien Trung Luu,Bui Minh Quang,Toan Minh Pham,Jinsoo Kim,Kyungwho Choi,Dukhyun Choi
摘要
Rapid breakthroughs in IoT and AI have raised demand for portable, self-powered, flexible sensor devices. Hydrogels with high conductivity, mechanical tunability, environmental adaptability, and biocompatibility are a clever way to develop flexible sensors for triboelectric nanogenerators. TENG application is limited by the paucity of suitable biomaterials and the need for highly conductive fillers such 2D materials, which trade off transparency, output, and sensing. A unique, very transparent, highly stretchable, high-output performance biomimetic stevia/PVA hydrogel-based triboelectric nanogenerator (S-TENG) is investigated to overcome this issue. Due to its abundant dynamic hydrogen bonding, cost-effective biomimetic stevia is added to polyvinyl alcohol (PVA) to increase hydrogel cross-linking and crystalline domains. These structural advancements give the S-hydrogel 2-5 times the mechanical strength and 3-8 times the electrical output of 2D-, bio-, and transparent-material-based TENGs, while maintaining transparency. The S-hydrogel may be recycled and recovered by water-assisted dissolution and re-gelation, keeping its voltage output. The improved S-TENG is a self-powered sensor for various human motions with great sensitivity and a 13-ms reaction time. The XGBoost method had the greatest classification accuracy of 95.29% among eleven machine learning models, showing the promise of self-powered sensors for many applications.
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