Department of Chemical Engineering, Faculty of Engineering, Monash University, Clayton 3800, Victoria, Australia.
J Mater Chem B. 2020 Apr 29;8(16):3655-3660. doi: 10.1039/c9tb02477h.
Sweat pH is a key health indicator related to metabolism and homeostasis level through hydrogen ion concentration in biological bio-fluid. Therefore, increasing research efforts have been directed to develop wearable pH sensors towards continuous non-invasive monitoring of sweat pH values in the out-of-hospital environments. Herein, we report a stretchable gold fiber-based electrochemical pH sensor based on our recently developed elastomer-bonded gold nanowire coating technology. The densely packed gold film offers superior strain-insensitive conductivity, high stretchability and large electrochemical active surface area (EASA). By electrodepositing polyamine (PANI) and Ag/AgCl onto the gold fibers, we could selectively detect the pH based on open circuit potentials in an ion-selective electrode design. The obtained fiber-based pH sensors feature a great sensitivity (60.6 mV per pH), high selectivity against cationic interference and high stretchability (up to 100% strain). One of the attributes for the fiber-based sensors is that they can be weaved into textiles, holding great potential for integration into everyday clothing for "unfeelable" personal health monitoring.
汗液 pH 值是与代谢和内稳态水平相关的关键健康指标,通过生物体液中的氢离子浓度来反映。因此,研究人员一直在努力开发可穿戴 pH 传感器,以便在院外环境中对汗液 pH 值进行连续的非侵入式监测。在此,我们报告了一种基于金纤维的拉伸电化学 pH 传感器,该传感器基于我们最近开发的弹性体结合金纳米线涂层技术。密集排列的金膜提供了优越的应变不敏感导电性、高拉伸性和大电化学活性表面积 (EASA)。通过在金纤维上电沉积聚胺 (PANI) 和 Ag/AgCl,我们可以根据离子选择性电极设计中的开路电位来选择性地检测 pH 值。所得到的纤维基 pH 传感器具有很高的灵敏度(每 pH 值 60.6 mV)、对阳离子干扰的高选择性和高拉伸性(高达 100%应变)。纤维基传感器的一个特点是可以编织成纺织品,为集成到日常服装中进行“无感”个人健康监测提供了很大的潜力。