Zhang Shubin, Qiang Tian, Jiang Yanfeng
School of Internet of Things Engineering, Jiangnan University, Wuxi 214122, China.
Institute of Advanced Technology, Jiangnan University, Wuxi 214122, China.
Sensors (Basel). 2024 Feb 2;24(3):969. doi: 10.3390/s24030969.
Micro direct methanol fuel cells (μDMFCs) are a promising power source for microelectronic devices and systems. As the operating state and performance of a μDMFC is generally determined by both electrochemical polarization and methanol crossover, it is important to monitor the methanol concentration in μDMFCs. Here, we design and fabricate a microwave sensor and integrate it with a μDMFC for the online detection of methanol concentration in a nonintrusive way. The sensing area is set at the bottom of the anode chamber of a μDMFC which exhibits a maximum output power density of 28.8 mW cm at 30 °C. With a square ring structure, the dual-mode microwave sensor shows a sensitivity of 9.5 MHz mol L. Furthermore, the importance of methanol concentration monitoring is demonstrated in the long term. A relatively smooth methanol decline curve was obtained, which indicated a normal and stable operating status of the μDMFC. Derived from real-time recording data, fuel utilization was additionally calculated as 28.5%.
微型直接甲醇燃料电池(μDMFC)是微电子设备和系统中一种很有前景的电源。由于μDMFC的运行状态和性能通常由电化学极化和甲醇渗透共同决定,因此监测μDMFC中的甲醇浓度非常重要。在此,我们设计并制造了一种微波传感器,并将其与μDMFC集成,以非侵入方式在线检测甲醇浓度。传感区域设置在μDMFC阳极室底部,该μDMFC在30℃时表现出28.8 mW/cm²的最大输出功率密度。具有方形环结构的双模微波传感器灵敏度为9.5 MHz/(mol/L)。此外,长期监测甲醇浓度的重要性也得到了证明。获得了相对平滑的甲醇下降曲线,这表明μDMFC运行状态正常且稳定。根据实时记录数据,还计算出燃料利用率为28.5%。