摩擦电效应
材料科学
气体分析呼吸
丙酮
纳米技术
复合材料
色谱法
化学
有机化学
作者
Bohao Liu,Alberto Libanori,Yihao Zhou,Xiao Xiao,Guangzhong Xie,Xun Zhao,Yuanjie Su,Si Wang,Zhen Yuan,Zaihua Duan,Jun‐Ge Liang,Yadong Jiang,Huiling Tai,Jun Chen
标识
DOI:10.1021/acsami.1c22457
摘要
The high moisture level of exhaled gases unavoidably limits the sensitivity of breath analysis via wearable bioelectronics. Inspired by pulmonary lobe expansion/contraction observed during respiration, a respiration-driven triboelectric sensor (RTS) was devised for simultaneous respiratory biomechanical monitoring and exhaled acetone concentration analysis. A tin oxide-doped polyethyleneimine membrane was devised to play a dual role as both a triboelectric layer and an acetone sensing material. The prepared RTS exhibited excellent ability in measuring respiratory flow rate (2-8 L/min) and breath frequency (0.33-0.8 Hz). Furthermore, the RTS presented good performance in biochemical acetone sensing (2-10 ppm range at high moisture levels), which was validated via finite element analysis. This work has led to the development of a novel real-time active respiratory monitoring system and strengthened triboelectric-chemisorption coupling sensing mechanism.
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