摩擦电效应
纳米技术
材料科学
吸附
解吸
响应时间
电子转移
氨
纳米发生器
化学传感器
计算机科学
光电子学
电化学气体传感器
灾害应对
生物系统
氨气
环境科学
工艺工程
合理设计
化学工程
传质
作者
Tao Liu,Xuedi Li,Huanjie He,Kang Yu,Song Zhang,Ziyi Ye,Xue Cui,Bin Luo,Yanhua Liu,Mingchao Chi,Yì Wáng,Chenchen Cai,Shuangfei Wang,Shuangxi Nie
标识
DOI:10.1038/s41467-026-68974-4
摘要
Gas sensors with fast response are in high demand for environmental and health applications. Conventional solid-state sensing materials are inherently constrained by response delays arising from chemical bond transformations, posing significant challenges in overcoming response time lag. In this work, inspired by the alveoli of our respiratory system, we develop a triboelectric nanogenerator probe sensor driven by the formation of water droplets containing an air cavity, which incorporates NH3 molecules. The sensor achieves rapid response through instantaneous electron transfer at the liquid-solid interface, bypassing the need for gas adsorption and desorption on the surface of solid-state sensing materials. This hydro-electrochemical sensing mechanism achieves a response time of 1.4 s, surpassing that of most reported ammonia sensors. Through the integration of deep learning algorithms for optimization, the sensor demonstrates an ammonia detection accuracy of 96.2%. This study indicates a promising strategy for the rational design of gas sensors based on hydro-electrochemical sensing mechanisms.
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