Lu Linlin, Liu Xu, Gu Puzhong, Hu Zhenyu, Liang Xing, Deng Zhiying, Sun Zejun, Zhang Xiaoyu, Yang Xiao, Yang Jie, Zu Guoqing, Huang Jia
Interdisciplinary Materials Research Center, Department of Polymeric Materials, School of Materials Science and Engineering, Tongji University, Shanghai, PR China.
Nat Commun. 2025 Apr 23;16(1):3831. doi: 10.1038/s41467-025-59240-0.
Stretchable organic electrochemical transistors (OECTs) are promising for flexible electronics. However, the balance between stretchability and electrical properties is a great challenge for OECTs. Here, high-performance stretchable all-gel OECTs based on semiconducting polymer gel active layers and poly(ionic liquid) ionogel electrolytes are developed. The all-gel network structures effectively promote ion penetration/transport and endows the OECTs with high stretchability. The resulting OECTs exhibit an excellent combination of ultra-high transconductance of 86.4 mS, on/off ratio of 1.2 × 10, stretchability up to 50%, and high stretching stability up to 10000 cycles under 30% strain. We demonstrate that the all-gel OECTs can be used as stretchable pressure-sensitive electronic skins with a low detection limit for tactile perception of robotic hands. In addition, the all-gel OECTs can be applied as stretchable artificial synapses for neuromorphic simulation and highly sensitive stretchable gas sensors for simulating olfactory perception process and monitoring food quality. This work provides a general all-gel strategy toward high-performance flexible electronics.
可拉伸有机电化学晶体管(OECTs)在柔性电子学领域具有广阔前景。然而,对于OECTs而言,实现拉伸性与电学性能之间的平衡是一项巨大挑战。在此,基于半导体聚合物凝胶活性层和聚(离子液体)离子凝胶电解质,开发出了高性能可拉伸全凝胶OECTs。全凝胶网络结构有效促进了离子渗透/传输,并赋予OECTs高拉伸性。由此制得的OECTs展现出了卓越的综合性能:超高跨导达86.4 mS、开/关比为1.2×10、拉伸性高达50%,以及在30%应变下高达10000次循环的高拉伸稳定性。我们证明,全凝胶OECTs可用作可拉伸压敏电子皮肤,对机器人手的触觉感知具有低检测限。此外,全凝胶OECTs还可应用于神经形态模拟的可拉伸人工突触以及用于模拟嗅觉感知过程和监测食品质量的高灵敏度可拉伸气体传感器。这项工作为高性能柔性电子学提供了一种通用的全凝胶策略。