Zhao Jipeng, Yu Zixiao, Tu Zhenyue, Bian Hongxia
Gansu Province Special Equipment Inspection and Testing Institute, Lanzhou 730050, China.
College of Science, Gansu Agricultural University, Lanzhou 730070, China.
Micromachines (Basel). 2022 Jun 24;13(7):992. doi: 10.3390/mi13070992.
Electrode structure is an essential factor affecting the performance of flexible humidity sensors. In this study, Cu and Cu2 + 1O electrodes were printed by the one-step method using laser direct writing technology to reduce the nano-CuO ink on flexible substrate PI and to be used for a humidity sensor. The resistance of the humidity sensors with nine various electrode structures was measured under the relative humidity (RH) of 16-78%. It was observed that all sensors showed good humidity sensing characteristics, and the sensitivity of the copper-based humidity sensor was not affected by the electrode structure under low humidity conditions but was significant under high humidity conditions. The sensor with the length of 1960 μm and the width of 120 μm shows the lowest sensitivity of 180.2 KΩ/%RH under 35% RH, and the sensor with the length of 2430 μm and the width of 180 μm shows the highest sensitivity of 1744 kΩ/%RH under 65% RH. It is expected that the results can provide an assessment of the performance improvement of the flexible humidity sensor and a reference for the research and development of intelligent wearable devices.
电极结构是影响柔性湿度传感器性能的一个重要因素。在本研究中,采用激光直写技术通过一步法在柔性衬底聚酰亚胺(PI)上印刷铜(Cu)和氧化亚铜(Cu₂O)电极,以还原纳米氧化铜墨水,并将其用于湿度传感器。在16%-78%的相对湿度(RH)下测量了具有九种不同电极结构的湿度传感器的电阻。结果表明,所有传感器均表现出良好的湿度传感特性,在低湿度条件下,铜基湿度传感器的灵敏度不受电极结构的影响,但在高湿度条件下则有显著影响。长度为1960μm、宽度为120μm的传感器在35%RH下显示出最低灵敏度,为180.2KΩ/%RH,长度为2430μm、宽度为180μm的传感器在65%RH下显示出最高灵敏度,为1744kΩ/%RH。预计该结果可为柔性湿度传感器性能的提升评估以及智能可穿戴设备的研发提供参考。