Han Changdao, Jiang Jie, Mu Liuhua, Zhao Wenhui, Liu Junfan, Lan Jian, Hu Shouyuan, Yang Huan, Gao Shan, Zhou Feng, Chen Junlang, Fan Yan, Duan Xiangmei, Li Pei, Chen Liang
School of Physical Science and Technology, Ningbo University, Ningbo, 315211, China.
Department of Optical Engineering, College of Optical, Mechanical and Electrical Engineering, Zhejiang A&F University, Hangzhou, 311300, China.
Nat Commun. 2025 Jan 25;16(1):1020. doi: 10.1038/s41467-025-56358-z.
The high performance of two-dimensional (2D) channel membranes is generally achieved by preparing ultrathin or forming short channels with less tortuous transport through self-assembly of small flakes, demonstrating potential for highly efficient water desalination and purification, gas and ion separation, and organic solvent waste treatment. Here, we report the construction of vertical channels in graphene oxide (GO) membrane based on a substrate template with asymmetric pores. The membranes achieved water permeance of 2647 L m h bar while still maintaining an ultrahigh rejection rate of 99.9% for heavy metal ions, which is superior to the state-of-the-art 2D membranes reported. Furthermore, the membranes exhibited excellent stability during long-term filtration experiments for at least 48 h, as well as resistance to ultrasonic treatment for over 100 minutes. The vertical channels possess very short pathway for almost direct water transport and a highly effective channel area, meanwhile the asymmetric porous template enhances the packing of the inserted GO nanosheets to avoid the swelling effect of membrane. Our work provides a simple way to fabricate vertical channels of 2D nanofiltration membranes with high water purification performance.
二维(2D)通道膜的高性能通常是通过制备超薄膜或通过小薄片的自组装形成具有较少曲折传输的短通道来实现的,这显示了其在高效水脱盐与净化、气体和离子分离以及有机溶剂废物处理方面的潜力。在此,我们报告了基于具有不对称孔的基底模板在氧化石墨烯(GO)膜中构建垂直通道。这些膜实现了2647 L m⁻² h⁻¹ bar⁻¹的透水率,同时对重金属离子仍保持99.9%的超高截留率,优于已报道的最先进的2D膜。此外,这些膜在至少48小时的长期过滤实验中表现出优异的稳定性,并且对超过100分钟的超声处理具有抗性。垂直通道具有几乎直接的水传输的非常短的路径和高效的通道面积,同时不对称多孔模板增强了插入的GO纳米片的堆积以避免膜的溶胀效应。我们的工作提供了一种制备具有高水净化性能的二维纳滤膜垂直通道的简单方法。