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Facile Size-Selective Defect Sealing in Large-Area Atomically Thin Graphene Membranes for Sub-Nanometer Scale Separations

机译:用于亚纳米尺度分离的大面积原子薄石墨烯膜中的面积尺寸选择性缺陷密封

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摘要

Atomically thin graphene with a high-density of precise subnanometer pores represents the ideal membrane for ionic and molecular separations. However, a single large-nanopore can severely compromise membrane performance and differential etching between pre-existing defects/grain boundaries in graphene and pristine regions presents fundamental limitations. Here, we show for the first time that size-selective interfacial polymerization after high-density nanopore formation in graphene not only seals larger defects (>0.5 nm) and macroscopic tears but also successfully preserves the smaller subnanometer pores. Low-temperature growth followed by mild UV/ozone oxidation allows for facile and scalable formation of high-density (4-5.5 x 10(12) cm(-2)) useful subnanometer pores in the graphene lattice. We demonstrate scalable synthesis of fully functional centimeter-scale nanoporous atomically thin membranes (NATMs) with water (similar to 0.28 nm) permeance similar to 23X higher than commercially available membranes and excellent rejection to salt ions (similar to 0.66 nm, >97% rejection) as well as small organic molecules (similar to 0.7-1.5 nm, similar to 100% rejection) under forward osmosis.
机译:具有高密度精确亚腔轮孔的原子薄石墨烯代表了用于离子和分子分离的理想膜。然而,单个大纳米孔可能会严重损害膜性能,并且在石墨烯和原始区域中的预先存在的缺陷/晶界之间的差异蚀刻具有基本的限制。在这里,我们首次展示了在石墨烯中高密度纳米孔形成后的尺寸选择性界面聚合的第一次不仅密封较大的缺陷(> 0.5nm)和宏观撕裂,而且还成功地保留了较小的亚域孔。低温生长,然后是温和的UV /臭氧氧化允许容易和可伸缩的高密度(4-5.5×10(12)cm(-2))有用的石墨仪中的亚料仪孔隙。我们展示了具有水(类似于0.28nm)的完全功能厘米级纳米孔原子上薄膜(Natms)的可扩展合成,其渗透率与商业上可获得的膜高23倍,并且对盐离子的优异排斥(类似于0.66nm,> 97%的排斥反应)在前渗透下,小有机分子(类似于0.7-1.5nm,类似于100%抑制剂)。

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