摩擦电效应
材料科学
帕利烯
弹性体
纳米发生器
可穿戴计算机
接触面积
能量收集
电子皮肤
压电
触觉传感器
可穿戴技术
复合材料
可伸缩电子设备
纳米技术
数码产品
电气工程
能量(信号处理)
聚合物
机器人
计算机科学
工程类
人工智能
嵌入式系统
统计
数学
作者
Massimo Mariello,Luca Fachechi,Francesco Guido,Massimo De Vittorio
标识
DOI:10.1002/adfm.202101047
摘要
Abstract Flexible electronics based on piezoelectric/triboelectric devices is an attractive technology for human sensing. Their hybridization overcomes the limitations of single components, resulting in compliant skin sensors with enhanced performances and applicability. Such hybrid devices are typically based on wide‐area scarcely durable polymers or lead‐containing piezoelectric materials; they are often not biocompatible and poorly skin‐adaptable, lacking in multifunctionality. In this work, a novel compliant, conformal hybrid piezoelectric‐triboelectric ultra‐thin wearable sensor made of biocompatible materials is reported. The device is in contact with skin through an ultra‐soft patch covered on both sides by a thin friction parylene film. Its working principle is unprecedently based on three simultaneous, complementary and mutually enhancing effects: piezoelectric, skin‐contact‐actuation, and piezo‐tribo hybrid contact. The device can detect, with high sensitivity and wide measurement range, both the impulsiveness of sudden motions and the slower micro‐friction phenomena due to skin deformations, ensuring a stable and repeatable identification of bio‐signals typical of body movements. The device multifunctionality is shown for identifying gait walking, distinguishing hand gestures with a 5‐sensor system on the hand back, and monitoring human joints motions (neck, wrist, elbow, knee, ankle). The assessed energy harvesting capabilities demonstrate the suitability for fabrication of more complex self‐powered sensing systems.
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