Department of Chemical Engineering, Monash University, Clayton, Victoria 3800, Australia.
New Horizon Research Centre, Monash University, Clayton, Victoria 3800, Australia.
Anal Chem. 2020 Mar 17;92(6):4647-4655. doi: 10.1021/acs.analchem.0c00274. Epub 2020 Feb 27.
The noninvasive continuous analysis of human sweat is of great significance for improved healthcare diagnostics and treatment in the future, for which a wearable potentiometry-based ion-selective electrode (ISE) has attracted increasing attention, particularly involving ion detection. Note that traditional solid-state ISE electrodes are rigid ion-to-electron transducers that are not conformal to soft human skin and cannot function under stretched states. Here, we demonstrated that vertically aligned mushroom-like gold nanowires (v-AuNW) could serve as stretchable and wearable ion-to-electron transducers for multiplexed, in situ potentiometric analysis of pH, Na, and K in sweat. By modifying v-AuNW electrodes with polyaniline, Na ionophore X, and a valinomycin-based selective membrane, we could specifically detect pH, Na, and K, respectively, with high selectivity, reproducibility, and stability. Importantly, the electrochemical performance could be maintained even under 30% strain and during stretch-release cycles without the need of extrinsic structural design. Furthermore, our stretchable v-AuNW ISEs could be seamlessly integrated with a flexible printed circuit board, enabling wireless on-body detection of pH, Na, and K with fast response and negligible cross-talk, indicating considerable promise for noninvasive wearable sweat analysis.
非侵入式连续分析人体汗液对于未来改善医疗保健诊断和治疗具有重要意义,为此,一种基于可穿戴电位法的离子选择性电极(ISE)引起了越来越多的关注,特别是涉及离子检测。值得注意的是,传统的固态 ISE 电极是刚性的离子-电子转换器,与柔软的人体皮肤不贴合,无法在拉伸状态下工作。在这里,我们证明了垂直排列的蘑菇状金纳米线(v-AuNW)可以作为可拉伸和可穿戴的离子-电子转换器,用于汗液中 pH 值、Na 和 K 的多路、原位电位分析。通过用聚苯胺、钠离子载体 X 和基于缬氨霉素的选择性膜对 v-AuNW 电极进行修饰,我们可以分别特异性地检测 pH 值、Na 和 K,具有高选择性、重现性和稳定性。重要的是,即使在 30%的应变和拉伸-释放循环下,也无需外部结构设计,电化学性能就能得以保持。此外,我们的可拉伸 v-AuNW ISE 可以与柔性印刷电路板无缝集成,实现 pH 值、Na 和 K 的无线体上检测,具有快速响应和可忽略的串扰,表明在无创可穿戴汗液分析方面具有很大的应用前景。