Wang Chaoqi, He Anwei, Han Ge, Veronica Asmita, Wang Xu, Nyein Hnin Yin Yin
Department of Chemical and Biological Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong SAR 999077, China.
ACS Sens. 2025 Jul 25;10(7):4954-4962. doi: 10.1021/acssensors.5c00691. Epub 2025 Jul 13.
Maintaining proper hydration and electrolyte balance is essential for optimal health and performance, as imbalances can lead to serious health risks. Wearable technology has become a key tool for monitoring these critical parameters, offering real-time insights that are particularly valuable for active individuals and those with medical conditions. However, the effectiveness of wearable sensors during dynamic physical activities is often limited as their durability and stability can be compromised. Herein, we present an ultrastable and durable ready-to-use sweat electrolytes and secretion reporting system (r-SENSER) for continuous tracking of sweat electrolytes (i.e., Na and K) and secretion rate. The electrolyte sensor features internal calibration and enhanced interfacial stability through a semisolid electrolyte and a hydrophobic ion-to-electron transducer. The electrolyte sensors exhibited exceptional stability and eliminated the need for manual calibration, making it user-friendly and significantly extending their operational lifespan with a shelf life of over one month. Additionally, the sweat rate sensor, designed with a droplet-based sweat dispensing system, ensures accurate and prolonged sweat rate monitoring during strenuous activities. We validated the r-SENSER in individuals engaged in various indoor and outdoor activities for loss of electrolytes and hydration analysis. We envision that r-SENSER could play a transformational role in sports monitoring and health management, enabling proactive and informed decision-making without the need for professional oversight.
维持适当的水合作用和电解质平衡对于最佳健康和表现至关重要,因为失衡可能导致严重的健康风险。可穿戴技术已成为监测这些关键参数的关键工具,提供实时洞察,这对活跃个体和患有疾病的人尤为有价值。然而,可穿戴传感器在动态体育活动中的有效性往往受到限制,因为它们的耐用性和稳定性可能会受到影响。在此,我们展示了一种超稳定且耐用的即用型汗液电解质和分泌报告系统(r-SENSER),用于连续跟踪汗液电解质(即钠和钾)和分泌速率。电解质传感器具有内部校准功能,并通过半固体电解质和疏水离子-电子换能器增强界面稳定性。电解质传感器表现出卓越的稳定性,无需手动校准,使其用户友好,并通过超过一个月的保质期显著延长其使用寿命。此外,汗液速率传感器采用基于液滴的汗液分配系统设计,可确保在剧烈活动期间准确且长时间地监测汗液速率。我们在参与各种室内和室外活动的个体中验证了r-SENSER用于电解质流失和水合分析。我们设想r-SENSER可以在运动监测和健康管理中发挥变革性作用,无需专业监督即可实现主动且明智的决策。