Yang Zekun, Duan Qikai, Zang Junbin, Zhao Yunlong, Zheng Weihao, Xiao Ran, Zhang Zhidong, Hu Liangwei, Wu Guirong, Nan Xueli, Zhang Zengxing, Xue Chenyang, Gao Libo
Key Laboratory of Instrumentation Science and Dynamic Measurement Ministry of Education, North University of China, 030051 Taiyuan, China.
School of Automation and Software Engineering, Shanxi University, 030006 Taiyuan, China.
Microsyst Nanoeng. 2023 May 26;9:68. doi: 10.1038/s41378-023-00543-x. eCollection 2023.
Recently, flexible iontronic pressure sensors (FIPSs) with higher sensitivities and wider sensing ranges than conventional capacitive sensors have been widely investigated. Due to the difficulty of fabricating the nanostructures that are commonly used on electrodes and ionic layers by screen printing techniques, strategies for fabricating such devices using these techniques to drive their mass production have rarely been reported. Herein, for the first time, we employed a 2-dimensional (2D) hexagonal boron nitride (-BN) as both an additive and an ionic liquid reservoir in an ionic film, making the sensor printable and significantly improving its sensitivity and sensing range through screen printing. The engineered sensor exhibited high sensitivity (S> 261.4 kPa) and a broad sensing range (0.05-450 kPa), and it was capable of stable operation at a high pressure (400 kPa) for more than 5000 cycles. In addition, the integrated sensor array system allowed accurate monitoring of wrist pressure and showed great potential for health care systems. We believe that using -BN as an additive in an ionic material for screen-printed FIPS could greatly inspire research on 2D materials for similar systems and other types of sensors. Hexagonal boron nitride (-BN) was employed for the first time to make iontronic pressure sensor arrays with high sensitivity and a broad sensing range by screen printing.
近年来,与传统电容式传感器相比,具有更高灵敏度和更宽传感范围的柔性离子压力传感器(FIPS)受到了广泛研究。由于通过丝网印刷技术制造电极和离子层上常用的纳米结构存在困难,很少有关于使用这些技术制造此类器件以推动其大规模生产的策略的报道。在此,我们首次将二维(2D)六方氮化硼(-BN)用作离子膜中的添加剂和离子液体储存器,使传感器可印刷,并通过丝网印刷显著提高其灵敏度和传感范围。经过工程设计的传感器表现出高灵敏度(S>261.4 kPa)和宽传感范围(0.05 - 450 kPa),并且能够在400 kPa的高压下稳定运行超过5000次循环。此外,集成传感器阵列系统能够准确监测手腕压力,并在医疗保健系统中显示出巨大潜力。我们相信,在用于丝网印刷FIPS的离子材料中使用 -BN可以极大地激发对类似系统和其他类型传感器的二维材料的研究。六方氮化硼(-BN)首次被用于通过丝网印刷制造具有高灵敏度和宽传感范围的离子压力传感器阵列。