College of Optoelectronic Engineering, Key Laboratory of Optoelectronic Technology and Systems, Ministry of Education, Chongqing University, Chongqing 400044, China.
State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Chongqing University, Chongqing 400044, China.
ACS Appl Mater Interfaces. 2020 Nov 25;12(47):53049-53057. doi: 10.1021/acsami.0c13909. Epub 2020 Nov 10.
Wearable devices with integrated alarm functions play a vital role in daily life and can help people prevent potential hazards. Although many wearable sensors have been extensively studied and proposed to monitor various physiological signals, most of them are needed to integrate with the external alarm elements to realize warning, such as light-emitting diodes and buzzers, resulting in the system complexity and poor flexibility. In this paper, an integrated sensing and warning multifunctional device based on the mechanical and thermal effect of porous graphene is proposed on a bilayer asymmetrical pattern of laser-induced graphene (LIG). Compared with the strain sensor with nonpatterned LIG, the mechanical performance is greatly improved with the highest gauge factor value of up to 950 for the strain sensor with mesh-patterned LIG. On the contrary, the heating performance of the heater with nonpatterned LIG is better than that with mesh-patterned LIG. Combining the performance differences of different LIG patterns, the integrated wearable device with a bilayer asymmetrical LIG pattern is demonstrated. It can generate enough heating energy to warn the person when the detected signal meets the threshold condition measured in real time by the ultrasensitive strain sensor. This work will provide a new way to construct an integrated wearable device for realizing multifunctional applications. This integrated multifunctional device shows great potential toward the applications in healthcare monitoring and timely warning.
具有集成报警功能的可穿戴设备在日常生活中起着至关重要的作用,可以帮助人们预防潜在的危险。尽管许多可穿戴传感器已经被广泛研究并提出用于监测各种生理信号,但大多数都需要与外部报警元件集成才能实现报警,例如发光二极管和蜂鸣器,这导致系统复杂性和灵活性较差。在本文中,提出了一种基于多孔石墨烯的机械和热效应的集成传感和报警多功能器件,该器件基于激光诱导石墨烯(LIG)的双层非对称图案。与具有非图案化 LIG 的应变传感器相比,具有网格图案化 LIG 的应变传感器的机械性能得到了极大的提高,其最高应变系数值高达 950。相反,具有非图案化 LIG 的加热器的加热性能优于具有网格图案化 LIG 的加热器。结合不同 LIG 图案的性能差异,展示了具有双层非对称 LIG 图案的集成可穿戴设备。当通过超灵敏应变传感器实时测量到的检测信号达到阈值条件时,它可以产生足够的加热能量来警告佩戴者。这项工作将为构建用于实现多功能应用的集成可穿戴设备提供一种新方法。这种集成的多功能设备在医疗保健监测和及时报警方面显示出巨大的应用潜力。