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用于透析和分子分离的纳米多孔原子级薄石墨烯膜的可扩展合成:简便的异丙醇辅助热层压法

Scalable synthesis of nanoporous atomically thin graphene membranes for dialysis and molecular separations facile isopropanol-assisted hot lamination.

作者信息

Cheng Peifu, Moehring Nicole K, Idrobo Juan Carlos, Ivanov Ilia N, Kidambi Piran R

机构信息

Department of Chemical and Biomolecular Engineering, Vanderbilt University, Nashville, Tennessee 37212, USA.

Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, USA.

出版信息

Nanoscale. 2021 Feb 11;13(5):2825-2837. doi: 10.1039/d0nr07384a.

Abstract

Scalable graphene synthesis and facile large-area membrane fabrication are imperative to advance nanoporous atomically thin membranes (NATMs) for molecular separations. Although chemical vapor deposition (CVD) allows for roll-to-roll high-quality monolayer graphene synthesis, facile transfer with atomically clean interfaces to porous supports for large-area NATM fabrication remains extremely challenging. Sacrificial polymer scaffolds commonly used for graphene transfer typically leave polymer residues detrimental to membrane performance and transfers without polymer scaffolds suffer from low yield resulting in high non-selective leakage through NATMs. Here, we systematically study the factors influencing graphene NATM fabrication and report on a novel roll-to-roll manufacturing compatible isopropanol-assisted hot lamination (IHL) process that enables scalable, facile and clean transfer of CVD graphene on to polycarbonate track etched (PCTE) supports with coverage ≥99.2%, while preserving support integrity/porosity. We demonstrate fully functional centimeter-scale graphene NATMs that show record high permeances (∼2-3 orders of magnitude higher) and better selectivity than commercially available state-of-the-art polymeric dialysis membranes, specifically in the 0-1000 Da range. Our work highlights a scalable approach to fabricate graphene NATMs for practical applications and is fully compatible with roll-to-roll manufacturing processes.

摘要

可扩展的石墨烯合成以及简便的大面积薄膜制备对于推进用于分子分离的纳米多孔原子级薄膜(NATM)至关重要。尽管化学气相沉积(CVD)能够实现卷对卷的高质量单层石墨烯合成,但将具有原子级清洁界面的石墨烯轻松转移到多孔支撑体上以制备大面积NATM仍然极具挑战性。常用于石墨烯转移的牺牲聚合物支架通常会留下对膜性能有害的聚合物残留物,而无聚合物支架的转移产率较低,导致通过NATM的非选择性泄漏率很高。在此,我们系统地研究了影响石墨烯NATM制备的因素,并报告了一种新型的与卷对卷制造兼容的异丙醇辅助热层压(IHL)工艺,该工艺能够将CVD石墨烯可扩展、简便且清洁地转移到聚碳酸酯径迹蚀刻(PCTE)支撑体上,覆盖率≥99.2%,同时保持支撑体的完整性/孔隙率。我们展示了全功能的厘米级石墨烯NATM,其表现出创纪录的高渗透率(高出约2 - 3个数量级),并且比市售的最先进的聚合物透析膜具有更好的选择性,特别是在0 - 1000 Da范围内。我们的工作突出了一种用于实际应用的可扩展方法来制造石墨烯NATM,并且与卷对卷制造工艺完全兼容。

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