Xiong Zhiyuan, Shen Luyan, Long Jin, Li Xiao, Zhou Ke, Choi Gyeong Min, Ou Kangtai, Yang GuiYan, Ma Weichun, Lee Heon Sang, Sun Youyi, Li Dan
School of Materials Science and Technology, North University of China, Taiyuan, China.
Department of Chemical Engineering, The University of Melbourne, Parkville, Victoria, Australia.
Nat Commun. 2024 Dec 30;15(1):10807. doi: 10.1038/s41467-024-55131-y.
Colloidal properties of nanoparticles are intricately linked to their morphology. Traditionally, achieving high-concentration dispersions of two-dimensional (2D) nanosheets has proven challenging as they tend to agglomerate or re-stack under increased surface contact and Van der Waals attraction. Here, we unveil an excluded volume effect enabled by 2D morphology, which can be coupled with electrostatic repulsion to synthesize high-concentration aqueous graphene dispersions. To achieve this, we designed a sequential process involving edge oxidation, bubble expansion and mechanical shearing, through which graphite flakes were exfoliated into aqueous dispersions with ~94.5 wt.% yield of few-layer graphene, high concentration exceeding 100 mg mL, long-term stability over ~550 days, and large-scale wet processability. Structural analysis and theoretical modeling suggested that the 2D morphology of the resultant graphene nanosheets facilitates inter-sheet repulsive excluded volume interactions, leading to a fractal jammed network structure composed of nanosheets and tactoids to prevent their agglomeration. This effect was further leveraged in a continuous stirred tank reactor for the pilot-scale production of concentrated graphene dispersions. Our study unveils the role of excluded volume effect in stabilizing 2D-material colloids for industrial production and processing.
纳米颗粒的胶体性质与其形态密切相关。传统上,实现二维(2D)纳米片的高浓度分散已被证明具有挑战性,因为它们在增加的表面接触和范德华引力作用下容易团聚或重新堆叠。在此,我们揭示了一种由二维形态产生的排除体积效应,它可以与静电排斥相结合,以合成高浓度的水性石墨烯分散体。为了实现这一点,我们设计了一个包括边缘氧化、气泡膨胀和机械剪切的连续过程,通过该过程,石墨片被剥离成水性分散体,少层石墨烯的产率约为94.5 wt.%,高浓度超过100 mg mL,在约550天内具有长期稳定性,并且具有大规模湿法加工性能。结构分析和理论建模表明,所得石墨烯纳米片的二维形态促进了片层间的排斥性排除体积相互作用,导致由纳米片和类晶体组成的分形堵塞网络结构,以防止它们团聚。这种效应在连续搅拌釜式反应器中进一步用于中试规模生产浓缩石墨烯分散体。我们的研究揭示了排除体积效应在稳定二维材料胶体以用于工业生产和加工中的作用。