Huang Hao, Zhong Jinyao, Ye Yongliang, Wu Renxu, Luo Bin, Ning Honglong, Qiu Tian, Luo Dongxiang, Yao Rihui, Peng Junbiao
State Key Laboratory of Luminescent Materials and Devices, Institute of Polymer Optoelectronic Materials and Devices, South China University of Technology, Guangzhou 510640, China.
Department of Intelligent Manufacturing, Wuyi University, Jiangmen 529020, China.
Polymers (Basel). 2022 Sep 4;14(17):3670. doi: 10.3390/polym14173670.
Flexible electronic technology is one of the research hotspots, and numerous wearable devices have been widely used in our daily life. As an important part of wearable devices, flexible sensors can effectively detect various stimuli related to specific environments or biological species, having a very bright development prospect. Therefore, there has been lots of studies devoted to developing high-performance flexible pressure sensors. In addition to developing a variety of materials with excellent performances, the microstructure designs of materials can also effectively improve the performances of sensors, which has brought new ideas to scientists and attracted their attention increasingly. This paper will summarize the flexible pressure sensors based on material microstructure designs in recent years. The paper will mainly discuss the processing methods and characteristics of various sensors with different microstructures, and compare the advantages, disadvantages, and application scenarios of them. At the same time, the main application fields of flexible pressure sensors based on microstructure designs will be listed, and their future development and challenges will be discussed.
柔性电子技术是研究热点之一,众多可穿戴设备已在我们的日常生活中广泛应用。作为可穿戴设备的重要组成部分,柔性传感器能够有效检测与特定环境或生物物种相关的各种刺激,具有非常广阔的发展前景。因此,已有许多研究致力于开发高性能柔性压力传感器。除了开发各种具有优异性能的材料外,材料的微观结构设计也能有效提高传感器的性能,这为科学家们带来了新的思路,并日益引起他们的关注。本文将总结近年来基于材料微观结构设计的柔性压力传感器。本文将主要讨论具有不同微观结构的各种传感器的加工方法和特性,并比较它们的优缺点及应用场景。同时,将列出基于微观结构设计的柔性压力传感器的主要应用领域,并讨论其未来发展及挑战。