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在塑料基板上打印全集成自供电传感器系统。

Printable Fabrication of a Fully Integrated and Self-Powered Sensor System on Plastic Substrates.

机构信息

Department of Electronic and Computer Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, SAR, China.

Department of Electrical Engineering and Computer Science Massachusetts Institute of Technology, MA, 02139, USA.

出版信息

Adv Mater. 2019 Feb;31(5):e1804285. doi: 10.1002/adma.201804285. Epub 2018 Dec 6.

Abstract

Wearable and portable devices with desirable flexibility, operational safety, and long cruising time, are in urgent demand for applications in wireless communications, multifunctional entertainments, personal healthcare monitoring, etc. Herein, a monolithically integrated self-powered smart sensor system with printed interconnects, printed gas sensor for ethanol and acetone detection, and printable supercapacitors and embedded solar cells as energy sources, is successfully demonstrated in a wearable wristband fashion by utilizing inkjet printing as a proof-of-concept. In such a "wearable wristband", the harvested solar energy can either directly drive the sensor and power up a light-emitting diode as a warning signal, or can be stored in the supercapacitors in a standby mode, and the energy released from supercapacitors can compensate the intermittency of light illumination. To the best of our knowledge, the demonstration of such a self-powered sensor system integrated onto a single piece of flexible substrate in a printable and additive manner has not previously been reported. Particularly, the printable supercapacitors deliver an areal capacitance of 12.9 mF cm and the printed SnO gas sensor shows remarkable detection sensitivity under room temperature. The printable strategies for device fabrication and system integration developed here show great potency for scalable and facile fabrication of a variety of wearable devices.

摘要

可穿戴和便携式设备需要具有理想的灵活性、操作安全性和长时间的巡航能力,因此它们在无线通信、多功能娱乐、个人医疗保健监测等领域的应用需求迫切。在此,我们通过喷墨打印技术成功地展示了一种具有印刷互连、用于乙醇和丙酮检测的印刷气体传感器、以及作为能源的可印刷超级电容器和嵌入式太阳能电池的单片集成自供电智能传感器系统,该系统以可穿戴腕带的形式实现。在这种“可穿戴腕带”中,所收集的太阳能可以直接驱动传感器并为发光二极管供电作为警告信号,或者可以在备用模式下存储在超级电容器中,并且超级电容器释放的能量可以补偿光照的间歇性。据我们所知,以前尚未有报道将这种自供电传感器系统以可打印和添加的方式集成到单个柔性基板上。特别是,所制备的印刷超级电容器具有 12.9 mF cm 的面电容,并且在室温下,印刷的 SnO 气体传感器显示出显著的检测灵敏度。这里开发的用于器件制造和系统集成的可打印策略显示出了在可扩展和简易制造各种可穿戴设备方面的巨大潜力。

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