College of Bioresources Chemical and Materials Engineering , Shaanxi University of Science and Technology , Xi'an , 710021 , China.
ACS Appl Mater Interfaces. 2018 Aug 8;10(31):26610-26617. doi: 10.1021/acsami.8b06567. Epub 2018 Jul 25.
Hydrogels as soft and wet materials have attracted much attention in sensing and flexible electronics. However, traditional hydrogels are fragile or have unsatisfactory recovery capability, which largely limit their applications. Here, a novel hydrogen bond based sulfuric acid-poly(acrylic acid) (PAA)/poly(vinyl alcohol) physical hydrogel is developed for addressing the above drawbacks. Sulfuric acid serves two functions: one is to inhibit the ionization of carboxyl groups from PAA chains to form more hydrogen bonds and the other is to provide conductive ions to promote conductivity of hydrogel. Consequently, the hydrogel obtains comprehensive mechanical properties, including extremely rapid self-recovery (strain = 1, instantly self-recover; strain = 20, self-recover within 10 min), high fracture strength (3.1 MPa), and high toughness (18.7 MJ m). In addition, we demonstrate this hydrogel as a stretchable ionic cable and pressure sensor to exhibit stable operation after repeated loadings. This work provides a new concept to synthesize physical hydrogels, which will hopefully expand applications of hydrogel in stretchable electronics.
水凝胶作为柔软和湿的材料在传感和柔性电子领域引起了广泛关注。然而,传统的水凝胶易碎或恢复能力差,这在很大程度上限制了它们的应用。在这里,开发了一种基于氢键的硫酸-聚丙烯酸(PAA)/聚乙烯醇(PVA)物理水凝胶,以解决上述缺点。硫酸具有两个功能:一是抑制 PAA 链上羧基的电离以形成更多氢键,另一个是提供导电离子以促进水凝胶的导电性。因此,水凝胶获得了综合力学性能,包括极快的自恢复性(应变=1,立即自恢复;应变=20,在 10 分钟内自恢复)、高断裂强度(3.1 MPa)和高韧性(18.7 MJ m)。此外,我们将这种水凝胶用作可拉伸的离子电缆和压力传感器,在反复加载后表现出稳定的工作性能。这项工作为合成物理水凝胶提供了一个新概念,有望扩展水凝胶在可拉伸电子领域的应用。