Tran Van Tron, Mredha Md Tariful Islam, Pathak Suraj Kumar, Yoon Hyungsuk, Cui Jiaxi, Jeon Insu
School of Mechanical Engineering , Chonnam National University , 77 Yongbong-ro , Buk-gu, Gwangju 61186 , Republic of Korea.
Korea Research Institute of Standards and Science (KRISS) , 267 Gajeong-ro , Yuseong-gu, Daejeon 34113 , Republic of Korea.
ACS Appl Mater Interfaces. 2019 Jul 10;11(27):24598-24608. doi: 10.1021/acsami.9b06478. Epub 2019 Jun 27.
Conductive hydrogels are attracting increasing attention owing to their great potential for applications in flexible devices. For practical use, these high-water-content materials should not only show good conductivity but also be strong, stretchable, tough, and elastic. Herein, we describe a class of novel conductive tough hydrogels based on strong staggered Fe-carboxyl coordinating interactions. They are made from copolymers of acrylamide and -acryloyl glutamic acid, a bidentate-based comonomer. The design of the staggered structure of Fe and bidentate units is expected to enable energy dissipation and also results in a synergetic effect of two binding sites for fast self-recovery. We demonstrate that the equilibrated hydrogels with a water content of 53 wt % exhibit superior mechanical properties (e.g., highest tensile strength, 12.1 MPa; Young's modulus, 36.1 MPa; work of extension, 42.1 MJ m; fracture energy, 10,691 J m; compressive strength, 65.1 MPa at 98% strain without a macroscopic fracture) compared to the ion-coordinated hydrogels reported to date, including elasticity at small strain, fast self-recoverability at room temperature (∼25 °C), a high dielectric constant ( = 341-1395 at 100 kHz), and good electrical conductivity (0.0018-0.024 S cm). Given their extraordinary overall characteristics, we envision their potential applications in flexible electronic devices.
导电水凝胶因其在柔性设备中的巨大应用潜力而受到越来越多的关注。对于实际应用而言,这些高含水量材料不仅应具有良好的导电性,还应具备高强度、可拉伸、坚韧且有弹性的特性。在此,我们描述了一类基于强交错铁 - 羧基配位相互作用的新型导电坚韧水凝胶。它们由丙烯酰胺和双齿基共聚单体 - 丙烯酰基谷氨酸的共聚物制成。铁和双齿单元的交错结构设计有望实现能量耗散,并且还会产生两个结合位点的协同效应,以实现快速自我恢复。我们证明,含水量为53 wt%的平衡水凝胶表现出优异的力学性能(例如,最高拉伸强度为12.1 MPa;杨氏模量为36.1 MPa;拉伸功为42.1 MJ m;断裂能为10,691 J m;在98%应变下抗压强度为65.1 MPa且无宏观断裂),与迄今为止报道的离子配位水凝胶相比,具有小应变下的弹性、室温(约25°C)下的快速自我恢复性、高介电常数(100 kHz时为341 - 1395)以及良好的导电性(0.0018 - 0.024 S cm)。鉴于其非凡的整体特性,我们设想它们在柔性电子设备中的潜在应用。