i-Lab, Laboratory of Multifunctional Nanomaterials and Smart Systems , Suzhou Institute of Nano-Tech and Nano-Bionics (SINANO), Chinese Academy of Sciences (CAS) , 398 Ruoshui Road , Suzhou 215123 , P.R. China.
Nano Lett. 2019 Aug 14;19(8):5544-5552. doi: 10.1021/acs.nanolett.9b02081. Epub 2019 Aug 1.
Flexible self-powered multifunctional sensing systems provide a promising direction for the development of wearable electronics. Although increased efforts have been devoted to developing self-powered integrated devices, the development of flexible and adaptable sensing systems with miniaturized stable power supplies is highly desirable yet greatly challenging. Herein, an ambient moisture-induced self-powered wearable sensing system was fabricated by integrating a porous polydopamine layer with a hydroxy group gradient (called g-PDA) based moisture-enabled power generator and a flexible pressure sensor. Due to the large amount of gradient-distributed free cations (H) and locally confined anions produced in wide electrode spaces during hydration of the thin porous g-PDA film, the moisture-induced potential and effective output power density of the g-PDA-based power generator rapidly reaches up to 0.52 V and 0.246 mW cm, respectively. Importantly, the voltage output within 120 s only has 6% change, and a continuously open-circuit voltage can be maintained after 1900 s of attenuation, which is a breakthrough for the duration of humidity generation. Finally, a self-powered wearable multifunctional sensing system has been demonstrated to be able to provide real-time monitoring of human physiological signals, without an external power supply, which opens new opportunities for future self-powered multifunctional sensing systems.
灵活的自供电多功能传感系统为可穿戴电子设备的发展提供了有前景的方向。尽管已经投入了大量的努力来开发自供电的集成设备,但具有小型化稳定电源的灵活和可适应的传感系统的开发仍然是非常有必要的,但极具挑战性。在此,通过将具有羟基梯度(称为 g-PDA)的多孔聚多巴胺层与基于湿度的发电装置和柔性压力传感器集成,制备了一种环境湿度感应自供电可穿戴传感系统。由于在薄的多孔 g-PDA 薄膜水合过程中在宽电极空间中产生了大量梯度分布的自由阳离子(H)和局部受限的阴离子,基于 g-PDA 的发电机的湿度感应电势和有效输出功率密度迅速达到 0.52 V 和 0.246 mW cm,分别。重要的是,在 120 s 内的电压输出仅变化 6%,并且在衰减 1900 s 后可以保持连续开路电压,这是湿度产生持续时间的突破。最后,展示了自供电的可穿戴多功能传感系统能够实时监测人体生理信号,而无需外部电源,这为未来的自供电多功能传感系统开辟了新的机会。