College of Materials Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, PR China.
College of Materials Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, PR China.
Carbohydr Polym. 2022 Nov 15;296:119905. doi: 10.1016/j.carbpol.2022.119905. Epub 2022 Jul 21.
A nature-inspired strategy is developed to build dual-network hydrogels made up of rigid graphene oxide-functionalized nanocellulose (GO@NC) network and flexible poly[acrylamide-co-(acrylic acid)] (poly(AAm-co-AAc)) network. A pre-stretching method is used to form a muscle-shape anisotropic architecture. The penetration of poly(AAm-co-AAc) flexible network relieves the stiffness of NC network, thus improving the average elongation at break from 86.2 % to 748.0 %. Compared with the poly(AAm-co-AAc), the average rupture tensile strength rises remarkably by 228.6 %. The dual-crosslinked strategy endows the GO@NC-poly(AAm-co-AAc) hydrogels with a fast, stable and repeatable self-healing ability, which can achieve 85.0 % of healing efficiency after only 600 s of self-healing and maintain 76.2 % of initial strength after 10 cycles of breaking-self-healing. The superb self-healing ability is similar to the muscle function. For potential applications, the hydrogels can achieve real-time, stable, and long-term sensing as smart wearable strain sensors (high gauge factor: 5.13), and can effectively purify Sudan IV wastewater as green recyclable adsorbents.
一种受自然启发的策略被开发出来,用于构建由刚性氧化石墨烯功能化纳米纤维素(GO@NC)网络和柔性聚[丙烯酰胺-co-(丙烯酸)](poly(AAm-co-AAc))网络组成的双网络水凝胶。采用预拉伸方法形成肌肉状各向异性结构。聚(AAm-co-AAc)柔性网络的渗透缓解了 NC 网络的刚性,从而将平均断裂伸长率从 86.2%提高到 748.0%。与 poly(AAm-co-AAc)相比,平均断裂拉伸强度显著提高了 228.6%。双交联策略赋予 GO@NC-poly(AAm-co-AAc)水凝胶快速、稳定和可重复的自修复能力,仅在 600 s 的自修复后即可达到 85.0%的修复效率,在 10 次断裂-自修复循环后仍保持 76.2%的初始强度。这种出色的自修复能力类似于肌肉功能。在潜在应用中,水凝胶可以用作智能可穿戴应变传感器(高应变系数:5.13)实现实时、稳定和长期的传感,并且可以作为绿色可回收吸附剂有效净化苏丹 IV 废水。