Zhao Peng, Cao Muqing, Liu Cheng, Dai Yiheng, Tan Yizheng, Ji Shaobo, Xu Huaping
Key Laboratory of Organic Optoelectronics & Molecular Engineering, Department of Chemistry, Tsinghua University, Beijing 100084, People's Republic of China.
Innovative Centre for Flexible Devices (iFLEX), School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Singapore.
ACS Appl Mater Interfaces. 2022 Jun 2. doi: 10.1021/acsami.2c05570.
The development of underwater remote stimulus-responsive self-healing polymer materials for applications in inaccessible and urgent situations is very challenging because water can readily disturb traditional noncovalent bonds and absorb heat, UV light, IR light, and electromagnetic wave energy at the wave band of micrometers and millimeters. Herein, visible-light-responsive diselenide bonds are employed as the healing moieties to produce a water-enhanced and remote self-healing elastomer triggered by a blue laser, which possesses excellent underwater transmission capability. During healing, the strain at break reaches ∼200% in 5 min and its toughness almost fully recovers within 1 h, which is estimated to be the fastest reported to date for healing silicone elastomers with a healing efficiency above 90%. The remote underwater pipeline sealing is instantly accomplished with the diselenide-containing elastomers by a blue laser 3 m away, thereby providing a direction for future emergent healing applications.
开发用于难以接近和紧急情况的水下远程刺激响应型自愈合聚合物材料极具挑战性,因为水很容易干扰传统的非共价键,并吸收微米和毫米波段的热、紫外光、红外光和电磁波能量。在此,可见光响应性二硒键被用作愈合基团,以制备由蓝色激光触发的水增强型远程自愈合弹性体,该弹性体具有优异的水下传输能力。在愈合过程中,断裂应变在5分钟内达到约200%,其韧性在1小时内几乎完全恢复,这据估计是迄今为止报道的愈合效率高于90%的硅氧烷弹性体愈合速度最快的。含二硒键的弹性体通过3米外的蓝色激光可即时完成远程水下管道密封,从而为未来的紧急愈合应用提供了一个方向。