Guo Xingkui, Zhang Songlin, Patel Shubham, Sun Xiaolu, Zhu You-Liang, Wei Zechang, Wang Rongguo, He Xiaodong, Wang Zuankai, Yu Cunjiang, Tan Swee Ching
Department of Materials Science and Engineering, National University of Singapore, Singapore 117574, Singapore.
State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, Institute of Fiber Materials and Devices, and Laboratory of Advanced Materials, Fudan University, Shanghai 200438, China.
Sci Adv. 2025 May 16;11(20):eadv8523. doi: 10.1126/sciadv.adv8523.
Artificial skin is essential for bionic robotics, facilitating human skin-like functions such as sensation, communication, and protection. However, replicating a skin-matched all-in-one material with excellent mechanical properties, self-healing, adhesion, and multimodal sensing remains a challenge. Herein, we developed a multifunctional hydrogel by establishing a consolidated organic/metal bismuth ion architecture (COMBIA). Benefiting from hierarchical reversible noncovalent interactions, the COMBIA hydrogel exhibits an optimal combination of mechanical and functional properties, particularly its integrated mechanical properties, including unprecedented stretchability, fracture toughness, and resilience. Furthermore, these hydrogels demonstrate superior conductivity, optical transparency, freezing tolerance, adhesion capability, and spontaneous mechanical and electrical self-healing. These unified functions render our hydrogel exceptional properties such as shape adaptability, skin-like perception, and energy harvesting capabilities. To demonstrate its potential applications, an artificial skin using our COMBIA hydrogel was configured for stimulus signal recording, which, as a promising soft electronics platform, could be used for next-generation human-machine interfaces.
人造皮肤对于仿生机器人至关重要,它能实现类似人类皮肤的功能,如感知、通信和保护。然而,复制一种具有优异机械性能、自修复、粘附和多模态传感的与皮肤匹配的一体化材料仍然是一项挑战。在此,我们通过建立一种整合的有机/金属铋离子结构(COMBIA)开发了一种多功能水凝胶。受益于分级可逆非共价相互作用,COMBIA水凝胶展现出机械性能和功能特性的最佳组合,尤其是其综合机械性能,包括前所未有的拉伸性、断裂韧性和弹性。此外,这些水凝胶还表现出优异的导电性、光学透明度、耐冻性、粘附能力以及自发的机械和电气自修复能力。这些统一的功能赋予我们的水凝胶诸如形状适应性、类皮肤感知和能量收集能力等卓越特性。为了展示其潜在应用,使用我们的COMBIA水凝胶构建了一种人造皮肤用于刺激信号记录,作为一个有前景的软电子平台,可用于下一代人机界面。