Zhang Yawen, Chen Dongyun, Li Najun, Xu Qingfeng, Li Hua, He Jinghui, Lu Jianmei
College of Chemistry, Chemical Engineering and Materials Science, Collaborative Innovation Center of Suzhou Nano Science and Technology, Soochow University, Suzhou 215123, China.
ACS Appl Mater Interfaces. 2022 Mar 2;14(8):10237-10245. doi: 10.1021/acsami.1c20540. Epub 2022 Feb 15.
Two-dimensional (2D) materials are candidates for use in advanced molecular separation and water treatment. Among them, MXenes are cutting-edge two-dimensional (2D) materials with favorable properties such as high hydrophilicity, adjustable interlayer spacing, high mechanical strength, and structural stability. Therefore, they can be used to construct advanced lamellar membranes to ensure enhanced separation performance of modified membranes. Here, we prepared novel stable lamellar membranes through electrostatic attraction between polycation polyethyleneimine (PEI) and a negatively charged MXene, with hydrogen bond formation between their functional groups. By changing the pH of the suspension, the interlayer d-spacing of the prepared membrane could be altered to achieve precise molecular separation and ultrahigh organic solvent penetration. Furthermore, inserting PEI into the interlayer d-spacing of the membrane did not hinder the passage of water molecules. The prepared pH = 2-MXene-PEI membrane for dyes larger than 1.5 nm exhibited a rejection rate of greater than 96%, and the pH = 10-MXene-PEI membrane had a rejection rate of greater than 96% for dyes larger than 1.6 nm. In addition, the optimized MXene-PEI membranes showed channel stability. In this work, high-performance, stable, 2D MXene-PEI membranes with tunable nanochannels were developed. These membranes have great potential for use in precise molecular separation applications.
二维(2D)材料是用于先进分子分离和水处理的候选材料。其中,MXenes是具有高亲水性、可调节层间距、高机械强度和结构稳定性等优良特性的前沿二维(2D)材料。因此,它们可用于构建先进的层状膜,以确保改性膜具有增强的分离性能。在此,我们通过聚阳离子聚乙烯亚胺(PEI)与带负电荷的MXene之间的静电吸引作用,并在它们的官能团之间形成氢键,制备了新型稳定的层状膜。通过改变悬浮液的pH值,可以改变所制备膜的层间d间距,以实现精确的分子分离和超高的有机溶剂渗透率。此外,将PEI插入膜的层间d间距不会阻碍水分子的通过。所制备的pH = 2的MXene-PEI膜对大于1.5 nm的染料的截留率大于96%,而pH = 10的MXene-PEI膜对大于1.6 nm的染料的截留率大于96%。此外,优化后的MXene-PEI膜表现出通道稳定性。在这项工作中,开发了具有可调纳米通道的高性能、稳定的二维MXene-PEI膜。这些膜在精确分子分离应用中具有巨大的潜力。