Abele Christina D, Giesselmann Frank
Institute of Physical Chemistry, University of Stuttgart, Pfaffenwaldring 55, 70569, Stuttgart, Germany.
Soft Matter. 2022 Sep 14;18(35):6607-6617. doi: 10.1039/d2sm00662f.
Exfoliated platelets of graphene oxide (GO) can be considered as polydisperse 2D colloids that form nematic colloidal liquid crystal phases in aqueous suspension even at very low concentrations thanks to their extremely high aspect ratios. However, with the rapidly emerging scientific interest in these GO-based liquid crystals, it became clear that the precise analysis and control of the GO sheet size distribution is essential, both for their scientific understanding and for potential applications, , in optoelectronic devices, nanocomposites, or catalysis. In this work, we show that the mean effective (hydrodynamic) GO platelet width can be determined from the translational diffusion coefficient with depolarized dynamic light scattering by using a model for circular, infinitely thin disks. We further studied the phase separation process of biphasic isotropic-nematic GO dispersions and developed a simple fractionation protocol, which can be used to prepare relatively monodisperse fractions of GO sheets with widths ranging from 2.0-12.4 μm. Overall, we expect that the combined application of these relatively simple fractionation and analysis methods will advance the fabrication of well-defined and size-selected GO-based systems.
氧化石墨烯(GO)的片状剥落物可被视为多分散二维胶体,由于其极高的纵横比,即使在极低浓度下,它们在水悬浮液中也能形成向列型胶体液晶相。然而,随着对这些基于GO的液晶的科学兴趣迅速兴起,很明显,精确分析和控制GO片尺寸分布对于其科学理解以及在光电器件、纳米复合材料或催化等潜在应用中都至关重要。在这项工作中,我们表明,通过使用圆形无限薄盘模型,利用去偏振动态光散射从平移扩散系数可以确定平均有效(流体动力学)GO片状宽度。我们进一步研究了双相各向同性 - 向列型GO分散体的相分离过程,并开发了一种简单的分级方案,该方案可用于制备宽度范围为2.0 - 12.4μm的相对单分散的GO片级分。总体而言,我们预计这些相对简单的分级和分析方法的联合应用将推动制备定义明确且尺寸选定的基于GO的系统。