Robertson Ellen J, Stehle Yijing Y, Hu Xiaoyu, Kilby Luke, Olsson Katelyn, Nguyen Minh, Cortez Rebecca
Chemistry Department, Union College, Schenectady, NY 12308, USA.
Department of Mechanical Engineering, Union College, Schenectady, NY 12308, USA.
Membranes (Basel). 2022 Dec 7;12(12):1237. doi: 10.3390/membranes12121237.
Graphene oxide (GO) membranes are promising materials for water filtration applications due to abundant nanochannels in the membrane structure. Because GO membranes are unstable in water, metal cations such as Al are often introduced to the membrane structure to promote cross-linking between individual GO sheets. Here, we describe a simple yet versatile method to incorporate Al into GO membranes formed via a slow self-assembly process. Specifically, we directly added aluminum to acidic GO sheet solutions from a variety of sources: AlO, AlCl and Al foil. Each species reacts differently with water, which can affect the GO solution pH and thus the density of carboxylate groups on the sheet edges available for cross-linking to the Al cations. We demonstrate through characterization of the GO sheet solutions as well as the as-formed membranes' morphologies, hydrophobicities, and structures that the extent to which the Al cross-links to the GO sheet edges vs. the GO sheet basal planes is dependent on the Al source. Our results indicate that greatest enhancements in the membrane stability occur when electrostatic and coordination interactions between Al and the carboxylate groups on the GO sheet edges are more extensive than Al-π interactions between basal planes.
氧化石墨烯(GO)膜因其膜结构中丰富的纳米通道而成为水过滤应用的有前景的材料。由于GO膜在水中不稳定,通常会将铝等金属阳离子引入膜结构中,以促进单个GO片层之间的交联。在此,我们描述了一种简单而通用的方法,将铝掺入通过缓慢自组装过程形成的GO膜中。具体而言,我们从多种来源直接向酸性GO片层溶液中添加铝:AlO、AlCl和铝箔。每种物质与水的反应不同,这会影响GO溶液的pH值,进而影响可用于与铝阳离子交联的片层边缘羧基的密度。我们通过对GO片层溶液以及所形成膜的形态、疏水性和结构进行表征,证明铝与GO片层边缘交联的程度与GO片层基面交联的程度取决于铝源。我们的结果表明,当铝与GO片层边缘羧基之间的静电和配位相互作用比基面之间的铝-π相互作用更广泛时,膜稳定性的增强最大。