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◆ Talanta2026-08-03

Interfacial regulation of Nafion-decorated TiO2 composite films for high-response impedance humidity sensor.

Zipei Chen, Zhuoyi Chen, Zhiqiang Xiao, Dongmei Zheng, Haodong Cui, Bingsheng Du, Zourong Long, Menghan Dun, Yong He

原始摘要(英文原文)· Original abstract
Achieving high sensitivity, low hysteresis, and long-term stability in humidity sensors remains challenging for intelligent sensing systems. Herein, we report a high-response impedance humidity sensor based on Nafion-decorated TiO2 composite films prepared through a simple slurry-casting, thermal-annealing, and post-surface-functionalization process. In this design, TiO2 provides a stable inorganic framework and accessible interfacial adsorption sites, while the Nafion decoration layer introduces sulfonic-acid-based hydrophilic domains and proton-conductive pathways. By regulating the Nafion content, the interfacial water adsorption and charge-transport behavior of TiO2 films can be effectively optimized. The 1 wt% Nafion/TiO2 sensor delivers an outstanding response value of 12496.93 at 90% relative humidity, accompanied by a small humidity hysteresis of 2.17%, favorable repeatability, and long-term stability over a 30-day continuous test. Impedance analysis reveals that the enhanced response originates from reduced interfacial resistance, promoted water-assisted proton transport, and diffusion-related ionic conduction in the hydrated Nafion/TiO2 interfacial layer. Furthermore, the sensor is integrated into a compact wireless platform capable of real-time respiratory signal acquisition and abnormal breathing detection. This work presents a surface-engineering strategy enabling high-performance humidity sensing for practical wearable health-monitoring applications.
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Interfacial regulation of Nafion-decorated TiO2 composite films for high-response impedance humidity sensor. — 科研速览 Science Skim