Key Laboratory of Colloid and Interface Chemistry, Shandong University, Ministry of Education, Jinan, 250100, People's Republic of China.
Soft Matter. 2021 Apr 28;17(16):4352-4362. doi: 10.1039/d1sm00158b.
The next generation of high-performance flexible electronics has put forward new demands on the development of ionic conductive hydrogels. In recent years, many efforts have been made toward developing double-network (DN) hydrogels due to their excellent mechanical properties and unique network structures. However, profound challenges remain in achieving controllable surface morphology and multifunctional integration within DN hydrogels. In this work, we report the fabrication of a multifunctional DN hydrogel by multiple cross-linking between an innovative K+-containing poly(ionic liquid) (PIL) and κ-carrageenan. The resulting hydrogel possesses fascinating physicochemical properties, ranging from remarkable mechanical properties and machinability to adjustable surface morphology and superior adhesion ability. The extremely versatile DN hydrogels exhibited outstanding potential for the future of wearable strain sensors in real-time monitoring of human health, and the optimized design strategy opens new possibilities for the fabrication of multiscale structured and multifunctional integrated ionic conductive hydrogels.
下一代高性能柔性电子产品对离子导电水凝胶的发展提出了新的要求。近年来,由于具有优异的机械性能和独特的网络结构,人们已经做出了许多努力来开发双网络(DN)水凝胶。然而,在实现 DN 水凝胶的可控表面形态和多功能集成方面仍然存在深刻的挑战。在这项工作中,我们报告了通过创新的含 K+聚离子液体(PIL)和κ-卡拉胶之间的多次交联来制备多功能 DN 水凝胶。所得水凝胶具有迷人的物理化学性质,包括优异的机械性能和可加工性、可调的表面形态和优异的粘附能力。这种多功能的 DN 水凝胶具有用于实时监测人体健康的可穿戴应变传感器的巨大潜力,这种优化的设计策略为制造多尺度结构和多功能集成的离子导电水凝胶开辟了新的可能性。