State Key Laboratory of Resource Insects, Southwest University, Chongqing 400715, China.
Chongqing Engineering Research Center of Biomaterial Fiber and Modern Textile, College of Sericulture, Textile and Biomass Science, Southwest University, Chongqing 400715, China.
Sensors (Basel). 2024 Jul 19;24(14):4698. doi: 10.3390/s24144698.
Microstructures have been proved as crucial factors for the sensing performance of flexible pressure sensors. In this study, polypyrrole (PPy)/sunflower pollen (SFP) (P/SFP) was prepared via the in situ growth of PPy on the surface of degreased SFP with a sea urchin-like microstructure; then, these P/SFP microspheres were sprayed onto a flat silk cocoon (FSC) to prepare a sensing layer P/SFP-FSC. PPy-FSC (P-FSC) was prepared as an electrode layer through the in situ polymerization of PPy on the FSC surface. The sensing layer P/SFP-FSC was placed between two P-FSC electrode layers to assemble a P/SFP-FSC pressure sensor together with a fork finger electrode. With 6 mg/cm of optimized sprayed P/SFP microspheres, the prepared flexible pressure sensor has a sensitivity of up to 0.128 KPa in the range of 0-13.18 KPa and up to 0.13 KPa in the range of 13.18-30.65 KPa, a fast response/recovery time (90 ms/80 ms), and a minimum detection limit as low as 40 Pa. This fabricated flexible P/SFP-FSC sensor can monitor human motion and can also be used for the encrypted transmission of important information via Morse code. In conclusion, the developed flexible P/SFP-FSC pressure sensor based on microstructure modification in this study shows good application prospects in the field of human-computer interaction and wearable electronic devices.
微观结构已被证明是影响柔性压力传感器传感性能的关键因素。在本研究中,通过在脱脂葵花花粉(SFP)表面原位生长聚吡咯(PPy)制备了具有海胆状微观结构的PPy/SFP(P/SFP);然后,将这些 P/SFP 微球喷涂到平纹丝茧(FSC)上,制备了传感层 P/SFP-FSC。通过在 FSC 表面原位聚合 PPy 制备了 PPy-FSC(P-FSC)作为电极层。将传感层 P/SFP-FSC 置于两个 P-FSC 电极层之间,组装成一个 P/SFP-FSC 压力传感器和叉指电极。通过优化喷涂的 6 mg/cm 的 P/SFP 微球,所制备的柔性压力传感器在 0-13.18 KPa 范围内的灵敏度高达 0.128 KPa,在 13.18-30.65 KPa 范围内的灵敏度高达 0.13 KPa,具有快速的响应/恢复时间(90 ms/80 ms)和低至 40 Pa 的最小检测限。这种制造的基于微观结构修饰的柔性 P/SFP-FSC 传感器可以监测人体运动,也可以通过莫尔斯电码用于重要信息的加密传输。总之,本研究中基于微观结构修饰开发的柔性 P/SFP-FSC 压力传感器在人机交互和可穿戴电子设备领域具有良好的应用前景。