Andrew and Peggy Cherng Department of Medical Engineering, California Institute of Technology, Pasadena, CA 91125, USA.
Department of Electrical Engineering, California Institute of Technology, Pasadena, CA 91125, USA.
Sci Robot. 2020 Apr 22;5(41). doi: 10.1126/scirobotics.aaz7946.
Existing electronic skin (e-skin) sensing platforms are equipped to monitor physical parameters using power from batteries or near-field communication. For e-skins to be applied in the next generation of robotics and medical devices, they must operate wirelessly and be self-powered. However, despite recent efforts to harvest energy from the human body, self-powered e-skin with the ability to perform biosensing with Bluetooth communication are limited because of lack of a continuous energy source and limited power efficiency. Here, we report a flexible and fully perspiration-powered integrated electronic skin (PPES) for multiplexed metabolic sensing in situ. The battery-free e-skin contains multimodal sensors and highly efficient lactate biofuel cells that use a unique integration of zero- to three-dimensional nanomaterials to achieve high power intensity and long-term stability. The PPES delivered a record-breaking power density of 3.5 milliwatt-centimeter for biofuel cells in untreated human body fluids (human sweat) and displayed a very stable performance during a 60-hour continuous operation. It selectively monitored key metabolic analytes (e.g., urea, NH , glucose, and pH) and the skin temperature during prolonged physical activities and wirelessly transmitted the data to the user interface using Bluetooth. The PPES was also able to monitor muscle contraction and work as a human-machine interface for human- prosthesis walking.
现有的电子皮肤(e-skin)感应平台配备了使用电池或近场通信提供的电力来监测物理参数的功能。为了使电子皮肤能够应用于下一代机器人和医疗设备,它们必须能够无线操作并自供电。然而,尽管最近已经努力从人体中获取能量,但由于缺乏连续的能源和有限的功率效率,具有蓝牙通信功能的、能够进行生物感应的自供电电子皮肤仍然有限。在这里,我们报告了一种灵活的、完全汗液驱动的集成电子皮肤(PPES),用于原位进行代谢的多重感应。这款无电池的电子皮肤包含多模态传感器和高效的乳酸生物燃料电池,它采用独特的零到三维纳米材料集成方式,实现了高功率强度和长期稳定性。PPES 在未经处理的人体液(人汗)中为生物燃料电池提供了创纪录的 3.5 毫瓦厘米的功率密度,并在 60 小时的连续运行中表现出非常稳定的性能。它选择性地监测关键代谢分析物(例如尿素、NH3、葡萄糖和 pH 值)和皮肤温度,同时在长时间的体育活动中进行无线数据传输,并使用蓝牙将数据传输到用户界面。PPES 还能够监测肌肉收缩,并作为人机界面,用于人体假肢行走。