Wang Zhenwu, Cai Qianyu, Lu Lutong, Levkin Pavel A
Institute of Biological and Chemical Systems-Functional Molecular Systems (IBCS-FMS), Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, 76344, Eggenstein-Leopoldshafen, Germany.
Institute of Organic Chemistry (IOC), Karlsruhe Institute of Technology (KIT), Fritz-Haber-Weg 6, 76131, Karlsruhe, Germany.
Small. 2024 Feb;20(5):e2305214. doi: 10.1002/smll.202305214. Epub 2023 Sep 19.
Polymer gel-based pressure sensors offer numerous advantages over traditional sensing technologies, including excellent conformability and integration into wearable devices. However, challenges persist in terms of their performance and manufacturing technology. In this study, a method for fabricating gel pressure sensors using a hydrophobic/hydrophilic patterned surface is introduced. By shaping and fine-tuning the droplets of the polymer gel prepolymerization solution on the patterned surface, remarkable sensitivity improvements compared to unshaped hydrogels have been achieved. This also showcased the potential for tailoring gel pressure sensors to different applications. By optimizing the configuration of the sensor array, an uneven conductive gel array is fabricated, which exhibited a high sensitivity of 0.29 kPa in the pressure range of 0-30 kPa, while maintaining a sensitivity of 0.13 kPa from 30 kPa up to 100 kPa. Furthermore, the feasibility of using these sensors for human motion monitoring is explored and a conductive gel array for 2D force detection is successfully developed. This efficient and scalable fabrication method holds promise for advancing pressure sensor technology and offers exciting prospects for various industries and research fields.
基于聚合物凝胶的压力传感器相对于传统传感技术具有诸多优势,包括出色的贴合性以及可集成到可穿戴设备中。然而,在其性能和制造技术方面仍存在挑战。在本研究中,介绍了一种利用疏水/亲水图案化表面制造凝胶压力传感器的方法。通过在图案化表面上对聚合物凝胶预聚合溶液的液滴进行成型和微调,与未成型的水凝胶相比,实现了显著的灵敏度提升。这也展示了定制凝胶压力传感器以适应不同应用的潜力。通过优化传感器阵列的配置,制造出了一种不均匀导电凝胶阵列,该阵列在0至30 kPa的压力范围内表现出0.29 kPa的高灵敏度,而在30 kPa至100 kPa范围内保持0.13 kPa的灵敏度。此外,还探索了使用这些传感器进行人体运动监测的可行性,并成功开发了一种用于二维力检测的导电凝胶阵列。这种高效且可扩展的制造方法有望推动压力传感器技术的发展,并为各个行业和研究领域带来令人兴奋的前景。