Huang Yan-Tsz, Khan Arshad, Ganguly Anindita, Kaswan Kuldeep, Suresh Sreerag, Cheng Yu-Ying, Lee Kuan-Ming, Yu Jui-Han, Lin Zong-Hong
Department of Biomedical Engineering, National Taiwan University, Taipei, 10167, Taiwan.
Institute of Biomedical Engineering, National Tsing Hua University, Hsinchu, 30013, Taiwan.
Adv Sci (Weinh). 2025 Jun;12(24):e2410424. doi: 10.1002/advs.202410424. Epub 2024 Nov 8.
The integration of the Internet of Things (IoT) with advanced sensing technologies is transforming environmental monitoring and public health protection. In this study, a fully self-powered and automated chemical sensing system is developed and integrated with a robotic hand for "touch and sense" detection of toxic heavy metal ions (Pb⁺, Cr⁶⁺, As⁺) in aquatic environments. The system combines a self-powered solid-liquid triboelectric nanosensor (SL-TENS) with a thermoelectric generator (TEG), which harnesses ambient heat to power the robotic hand, eliminating the need for external power sources. The robotic hand is controlled wirelessly via an exo-hand, minimizing the risk of exposure during remote monitoring. The sensing component uses copper oxide nanowires (CuO NWs) coated with ion-selective membranes (ISMs) to enhance triboelectric output and enable highly selective ion detection. The system demonstrates effective real-time, on-site detection in lake water and data transmitted wirelessly to the user. This innovative approach provides a highly safe and efficient method for detecting hazardous pollutants in difficult-to-access areas, offering significant potential for wireless and real-time environmental monitoring and hazard prevention, thus contributing to the safeguarding of human health. This study presents a novel advancement in the field of IoT-enabled environmental monitoring systems.
物联网(IoT)与先进传感技术的融合正在改变环境监测和公共卫生保护。在本研究中,开发了一种完全自供电的自动化化学传感系统,并将其与机械手集成,用于对水生环境中的有毒重金属离子(Pb⁺、Cr⁶⁺、As⁺)进行“触摸与传感”检测。该系统将自供电的固液摩擦纳米传感器(SL-TENS)与热电发电机(TEG)相结合,利用环境热量为机械手供电,无需外部电源。机械手通过外部手部进行无线控制,最大限度地降低了远程监测期间的暴露风险。传感组件使用涂有离子选择性膜(ISM)的氧化铜纳米线(CuO NWs)来增强摩擦电输出并实现高选择性离子检测。该系统在湖水中展示了有效的实时现场检测,并将数据无线传输给用户。这种创新方法为在难以进入的区域检测有害污染物提供了一种高度安全和高效的方法,在无线和实时环境监测及危害预防方面具有巨大潜力,从而有助于保障人类健康。本研究展示了物联网环境监测系统领域的一项新进展。