Department of Biomedical Engineering, City University of Hong Kong, Hong Kong, China.
Hong Kong Centre for Cerebro-cardiovascular Health Engineering, Hong Kong Science Park, Hong Kong, China.
Nature. 2024 Apr;628(8006):84-92. doi: 10.1038/s41586-024-07161-1. Epub 2024 Mar 27.
Wearable electronics with great breathability enable a comfortable wearing experience and facilitate continuous biosignal monitoring over extended periods. However, current research on permeable electronics is predominantly at the stage of electrode and substrate development, which is far behind practical applications with comprehensive integration with diverse electronic components (for example, circuitry, electronics, encapsulation). Achieving permeability and multifunctionality in a singular, integrated wearable electronic system remains a formidable challenge. Here we present a general strategy for integrated moisture-permeable wearable electronics based on three-dimensional liquid diode (3D LD) configurations. By constructing spatially heterogeneous wettability, the 3D LD unidirectionally self-pumps the sweat from the skin to the outlet at a maximum flow rate of 11.6 ml cm min, 4,000 times greater than the physiological sweat rate during exercise, presenting exceptional skin-friendliness, user comfort and stable signal-reading behaviour even under sweating conditions. A detachable design incorporating a replaceable vapour/sweat-discharging substrate enables the reuse of soft circuitry/electronics, increasing its sustainability and cost-effectiveness. We demonstrated this fundamental technology in both advanced skin-integrated electronics and textile-integrated electronics, highlighting its potential for scalable, user-friendly wearable devices.
透气性极佳的可穿戴电子产品可带来舒适的佩戴体验,并能在长时间内实现连续的生物信号监测。然而,当前可透气电子产品的研究主要集中在电极和基板的开发阶段,与实际应用相比,这远远落后于与各种电子元件(例如电路、电子设备、封装)的全面集成。在单一的集成可穿戴电子系统中实现透气性和多功能性仍然是一个巨大的挑战。在这里,我们提出了一种基于三维液体二极管 (3D LD) 结构的集成透气可穿戴电子产品的通用策略。通过构建空间非均相润湿性,3D LD 可将汗液从皮肤单向自吸至出口,最大流速为 11.6 ml cm min,是运动时生理排汗率的 4000 倍,具有出色的皮肤友好性、用户舒适性和稳定的信号读取性能,即使在出汗条件下也是如此。采用包含可更换蒸气/汗液排放基板的可拆卸设计,可重复使用软电路/电子设备,从而提高其可持续性和成本效益。我们在先进的皮肤集成电子设备和纺织集成电子设备中展示了这项基础技术,突出了其在可扩展、用户友好的可穿戴设备中的应用潜力。