Wonkeun Park, Yunsung Kang, Xiaoyan Jin, Dongseok Lee, Seong‐Ju Hwang, Jongbaeg Kim
This study presents the design and fabrication of a ruthenium dioxide (RuO 2 ) nanosheets-functionalized tin dioxide (SnO 2 ) thin-film gas sensor integrated with a microheater in a suspended membrane structure. The RuO 2 nanosheets are synthesized via an intercalation-driven exfoliation process and subsequently deposited onto a sputtered SnO 2 thin film. Due to the catalytic properties and high surface-to-volume ratio of RuO 2 nanosheets, the functionalized sensor demonstrates a 337% increase in response ( R air / R gas ) to 10 ppm ethanol compared to pristine SnO 2 thin film. The sensor achieves sensitive detection from a few parts-per-million (ppm) down to several parts-per-billion (ppb) concentrations of ethanol. Evaluations under varied humidity conditions, as well as selectivity and 28-day stability tests, demonstrate that the RuO 2 nanosheets-functionalized sensor maintains reliable performance. These results highlight its potential as a sensitive, selective, and low-power solution for ethanol gas detection. Furthermore, the sensor successfully tracks breath alcohol concentration in real-time through controlled alcohol intake experiments, demonstrating its feasibility for practical breath alcohol detection.