Dual-sensitized hollow SnO2 nanospheres with rGO and Pd for highly sensitive detection of acetone in exhaled breath

Citations

SCOPUS

5

초록

Detecting acetone in human breath is crucial for the early diagnosis of metabolic disorders such as diabetes. Metal oxide semiconductor (MOS) based acetone breath sensors have received considerable attention due to their compactness and noninvasive nature. However, their limited sensitivity and interference from humidity present challenges in selectively detecting acetone. Herein, we propose sensors based on tin oxide hollow spheres dual-sensitized with reduced graphene oxide and ultrafine palladium nanoparticles (rGO-Sn-HS-Pd) for enhanced and selective detection of acetone. The Sn-HS are synthesized using a spray pyrolysis technique, followed by a hydrothermal process to achieve the rGO-Pd-NPs dual-sensitized SnO<inf>2</inf> hollow spheres. The rGO-Sn-HS-Pd sensor demonstrate high sensitivity to acetone, exceptional selectivity, and fast response/ recovery. Furthermore, by utilizing a linear fitting approach on the experimental response data for acetone concentrations, it is estimated that the rGO<inf>2</inf>-Sn-HS-Pd<inf>2</inf> sensor can detect acetone as low as 220 ppb. The optimized rGO<inf>2</inf>-Sn-HS-Pd<inf>2</inf> sensor demonstrates performance that is 7.35, 5.38, 3.87, 4.57, 1.27, and 1.15 times higher compared to the bare Sn-HS, rGO<inf>1</inf>-Sn-HS, rGO<inf>2</inf>-Sn-HS, rGO<inf>3</inf>-Sn-HS, rGO<inf>2</inf>-Sn-HS-Pd<inf>1</inf>, and rGO<inf>2</inf>-Sn-HS-Pd<inf>3</inf> sensors. Sensor arrays incorporating rGO<inf>2</inf>-Sn-HS-Pd<inf>2</inf> can distinguish breath patterns between healthy and simulated diabetic breath through principal component analysis, presenting a promising avenue for noninvasive diabetes screening and monitoring. © 2025 Elsevier B.V.

키워드

Acetone sensor; Exhaled breath analysis; Pd catalysts; Reduced graphene oxide; SnO2 hollow spheres
제목
Dual-sensitized hollow SnO2 nanospheres with rGO and Pd for highly sensitive detection of acetone in exhaled breath
저자
Shanmugasundaram, Arunkumar; Baek, Kun-woo; Paeng, Changung; Li, Longlong; Cha, Goeun; Woo, Jonghyeon; Kim, Dongsu; Yim, Changyong; Park, Jongsung; Cho, Jung Sang; Lee, Dongweon
DOI
10.1016/j.apsusc.2025.162959
발행일
2025-07-01
유형
Article
저널명
Applied Surface Science
권
696