Wang Jie, Sun Lingyu, Zou Minhan, Gao Wei, Liu Cihui, Shang Luoran, Gu Zhongze, Zhao Yuanjin
State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China.
Sci Adv. 2017 Jun 2;3(6):e1700004. doi: 10.1126/sciadv.1700004. eCollection 2017 Jun.
Functional materials with specific surface wettability play an important role in a wide variety of areas. Inspired by nature's pitcher plant, we present a novel slippery film with tunable wettability based on a shape-memory graphene sponge. The porous graphene sponge coated with shape-memory polymer was used to lock in inert lubricants and construct slippery surfaces to repel different liquids. The superelasticity and high strength, together with good electrical conductivity, of the graphene sponge imparted the graphene/polymer hybrid films with fast recoverable shape-memory properties. Various droplets could slip on the compressed film with a lubricant-covered surface, but the droplets would be pinned when the shape-memory graphene film rebounded due to electrical stimulation, which caused the penetration of the infused lubricant into the pores and the exposure of rough topography film surfaces. The electrothermally dynamic tuning approach was stable and reversible; thus, the shape-memory graphene film was imparted with controlled slippery properties and functions that would be amenable to a variety of applications, such as liquid handling for microplates.
具有特定表面润湿性的功能材料在众多领域发挥着重要作用。受自然界猪笼草的启发,我们展示了一种基于形状记忆石墨烯海绵的具有可调润湿性的新型光滑薄膜。涂覆有形状记忆聚合物的多孔石墨烯海绵用于锁定惰性润滑剂并构建光滑表面以排斥不同液体。石墨烯海绵的超弹性、高强度以及良好的导电性赋予了石墨烯/聚合物混合薄膜快速可恢复的形状记忆特性。各种液滴可以在覆盖有润滑剂的压缩薄膜上滑动,但当形状记忆石墨烯薄膜因电刺激而反弹时,液滴会被固定,这导致注入的润滑剂渗入孔隙并使粗糙的薄膜表面暴露。这种电热动态调节方法是稳定且可逆的;因此,形状记忆石墨烯薄膜具有可控的光滑特性和功能,适用于多种应用,如微孔板的液体处理。