Ding Guomin, Yang Bowen, Chen Kun, Wang Hong, Chen Junlei, Mei Qilin
School of Materials Science and Engineering, Wuhan University of Technology, Wuhan, 430070, P. R. China.
Adv Mater. 2024 Oct;36(40):e2408550. doi: 10.1002/adma.202408550. Epub 2024 Aug 19.
Self-assembled graphene films at air-liquid interface have great potential for multiple applications. However, the large size and ultrathin thickness for graphene-based films are hardly achieved simultaneously because of poor assembly ability of graphene oxide (GO) and cautious film transfer process (FTP). Herein, the ethanol-based binary solution with supramolecular clusters and weak polarity is introduced to enhance the assembly performance of GO. In this regime, GO film is formed within 52 s, and its formation temperature can be as low as -20 °C. More importantly, the attractive force between the formed GO film and this binary solution is 62% lower than that between GO film and traditional aqueous solution. On this basis, for the first time a spontaneous separation of the self-assembled GO film from solution is reported, and the air‒floating graphene films (AGFs) with nanoscale thickness and centimeter-scale diameter are prepared without FTP. By means of this separation behavior, the in situ growth AGFs sensors are fabricated, and they express fast response and ultrahigh sensitivity to imperceptible change in temperature and disturbances that are hardly recognized by common sensors. Therefore, a new accessible strategy is demonstrated to prepare ultrathin graphene macrofilms, which can be the excellent candidates for multifunctional, ultrasensitive sensors.
气液界面处的自组装石墨烯薄膜在多种应用中具有巨大潜力。然而,由于氧化石墨烯(GO)的组装能力较差以及薄膜转移过程(FTP)需谨慎操作,基于石墨烯的薄膜很难同时实现大尺寸和超薄厚度。在此,引入具有超分子簇和弱极性的乙醇基二元溶液来增强GO的组装性能。在这种情况下,GO薄膜在52秒内形成,其形成温度可低至-20°C。更重要的是,形成的GO薄膜与这种二元溶液之间的吸引力比GO薄膜与传统水溶液之间的吸引力低62%。在此基础上,首次报道了自组装GO薄膜从溶液中自发分离的现象,并且在无需FTP的情况下制备出了具有纳米级厚度和厘米级直径的气浮石墨烯薄膜(AGF)。借助这种分离行为,制备了原位生长的AGF传感器,它们对普通传感器难以识别的温度细微变化和干扰表现出快速响应和超高灵敏度。因此,展示了一种新的可实现的策略来制备超薄石墨烯宏观薄膜,其可成为多功能、超灵敏传感器的优秀候选材料。