Su Yi, Ma Chunsheng, Chen Jing, Wu Huiping, Luo Weixiang, Peng Yueming, Luo Zebang, Li Lin, Tan Yongsong, Omisore Olatunji Mumini, Zhu Zhengfang, Wang Lei, Li Hui
College of Mechanical Engineering, North University of China, Taiyuan, 030051, Shanxi, China.
Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen, 518055, Guangdong, China.
Nanoscale Res Lett. 2020 Oct 15;15(1):200. doi: 10.1186/s11671-020-03428-4.
In recent years, the development and research of flexible sensors have gradually deepened, and the performance of wearable, flexible devices for monitoring body temperature has also improved. For the human body, body temperature changes reflect much information about human health, and abnormal body temperature changes usually indicate poor health. Although body temperature is independent of the environment, the body surface temperature is easily affected by the surrounding environment, bringing challenges to body temperature monitoring equipment. To achieve real-time and sensitive detection of various parts temperature of the human body, researchers have developed many different types of high-sensitivity flexible temperature sensors, perfecting the function of electronic skin, and also proposed many practical applications. This article reviews the current research status of highly sensitive patterned flexible temperature sensors used to monitor body temperature changes. First, commonly used substrates and active materials for flexible temperature sensors have been summarized. Second, patterned fabricating methods and processes of flexible temperature sensors are introduced. Then, flexible temperature sensing performance are comprehensively discussed, including temperature measurement range, sensitivity, response time, temperature resolution. Finally, the application of flexible temperature sensors based on highly delicate patterning are demonstrated, and the future challenges of flexible temperature sensors have prospected.
近年来,柔性传感器的开发与研究逐渐深入,用于监测体温的可穿戴柔性设备的性能也有所提升。对于人体而言,体温变化反映了诸多有关人类健康的信息,而异常的体温变化通常预示着健康状况不佳。尽管体温不受环境影响,但体表温度很容易受到周围环境的影响,这给体温监测设备带来了挑战。为了实现对人体各部位温度的实时、灵敏检测,研究人员开发了许多不同类型的高灵敏度柔性温度传感器,完善了电子皮肤的功能,还提出了许多实际应用。本文综述了用于监测体温变化的高灵敏度图案化柔性温度传感器的当前研究现状。首先,总结了柔性温度传感器常用的基底和活性材料。其次,介绍了柔性温度传感器的图案化制造方法和工艺。然后,全面讨论了柔性温度传感性能,包括温度测量范围、灵敏度、响应时间、温度分辨率。最后,展示了基于高度精细图案化的柔性温度传感器的应用,并对柔性温度传感器未来面临的挑战进行了展望。