Yao Zhen, Meyerbröker Nikolaus, Qi Yubo, Cremer Julian, Westphal Michael, Anselmetti Dario, Yang Yang, Gölzhäuser Armin
Faculty of Physics, Bielefeld University, Universitätsstr. 25, 33615 Bielefeld, Germany.
CNM Technologies GmbH, Morgenbreede 1, 33615 Bielefeld, Germany.
ACS Appl Mater Interfaces. 2023 Aug 30;15(34):41101-41108. doi: 10.1021/acsami.3c07369. Epub 2023 Aug 16.
Nanoporous carbon nanomembranes (CNMs) created by self-assembled monolayers ideally combine a high water flux and precise ion selectivity for molecular separation and water desalination. However, their practical implementation is often challenged by the availability of large epitaxial substrates, limiting the membrane up-scaling. Here, we report a scalable synthesis of CNMs from poly(4-vinylbiphenyl) (PVBP) spin-coated on SiO/Si wafers. Electron irradiation of the amorphous PVBP molecular layers induces the formation of a continuous membrane with a thickness of 15 nm and a high density of subnanometer pores, providing a water permeance as high as 530 L m h bar, while repelling ions and molecules larger than 1 nm in size. A further introduction of a reinforced porous block copolymer layer enables the fabrication of centimeter-scale CNM composites that efficiently separate organic dyes from water. These results suggest a feasible route for large-scale nanomembrane fabrication.
由自组装单分子层制备的纳米多孔碳纳米膜(CNM)理想地结合了高水通量和精确的离子选择性,可用于分子分离和海水淡化。然而,其实际应用往往受到大尺寸外延衬底可用性的挑战,限制了膜的扩大规模。在此,我们报道了一种可扩展的方法,通过将聚(4-乙烯基联苯)(PVBP)旋涂在SiO/Si晶片上合成CNM。对非晶态PVBP分子层进行电子辐照可诱导形成厚度为15 nm且具有高密度亚纳米孔的连续膜,其水渗透率高达530 L m h bar,同时排斥尺寸大于1 nm的离子和分子。进一步引入增强的多孔嵌段共聚物层能够制备厘米级的CNM复合材料,可有效地从水中分离有机染料。这些结果为大规模纳米膜制备提供了一条可行的途径。