Xidian University, School of Aerospace Science and Technology, 266 Xifeng Road, Xi'an 710126, China; Xidian University, School of Microelectronics, Xi'an, China; Key Laboratory of Wide Band-Gap Semiconductors and Devices, Xi'an 710126, China.
Xidian University, School of Aerospace Science and Technology, 266 Xifeng Road, Xi'an 710126, China.
J Hazard Mater. 2024 Oct 5;478:135462. doi: 10.1016/j.jhazmat.2024.135462. Epub 2024 Aug 9.
For hazardous gas monitoring and non-invasive diagnosis of diabetes using breath analysis, porous foams assembled by CoO nanoparticles were designed as sensing electrode materials to fabricate efficient yttria-stabilized zirconia (YSZ)-based acetone sensors. The sensitivity of the sensors was improved by varying the sintering temperature to regulate the morphology. Compared to other materials sintered at different temperatures, the porous CoO nanofoams sintered at 800 °C exhibited the highest electrochemical catalytic activity during the electrochemical test. The response of the corresponding CoO-based sensor to 10 ppm acetone was -77.2 mV and it exhibited fast response and recovery times. Moreover, the fabricated sensor achieved a low detection limit of 0.05 ppm and a high sensitivity of -56 mV/decade in the acetone concentration range of 1-20 ppm. The sensor also exhibited excellent repeatability, acceptable selectivity, good O/humidity resistance, and long-term stability during continuous measurements for over 30 days. Moreover, the fabricated sensor was used to determine the acetone concentration in the exhaled breaths of patients with diabetic ketosis. The results indicated that it could distinguish between healthy individuals and patients with diabetic ketosis, thereby proving its abilities to diagnose and monitor diabetic ketosis. Based on its excellent sensitivity and exhaled breath measurement results, the developed sensor has broad application prospects.
为了通过呼吸分析进行危险气体监测和非侵入性糖尿病诊断,设计了由 CoO 纳米颗粒组装而成的多孔泡沫作为传感电极材料,以制造高效的氧化钇稳定氧化锆(YSZ)基丙酮传感器。通过改变烧结温度来调节形态,可以提高传感器的灵敏度。与在不同温度下烧结的其他材料相比,在 800°C 下烧结的多孔 CoO 纳米泡沫在电化学测试中表现出最高的电化学催化活性。相应的 CoO 基传感器对 10 ppm 丙酮的响应为-77.2 mV,并且表现出快速的响应和恢复时间。此外,所制造的传感器在 1-20 ppm 的丙酮浓度范围内实现了低检测限为 0.05 ppm 和高灵敏度为-56 mV/decade。该传感器还表现出出色的重复性、可接受的选择性、良好的抗 O/湿度性和在超过 30 天的连续测量中的长期稳定性。此外,所制造的传感器用于测定患有糖尿病酮症患者呼气中的丙酮浓度。结果表明,它可以区分健康个体和患有糖尿病酮症的患者,从而证明了其诊断和监测糖尿病酮症的能力。基于其出色的灵敏度和呼气测量结果,所开发的传感器具有广阔的应用前景。