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Designing hierarchical nanoporous membranes for highly efficient gas adsorption and storage

机译:设计分层纳米多孔膜,用于高效气体吸附和储存

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Nanoporous membranes with two-dimensional materials such as graphene oxide have attracted attention in volatile organic compounds (VOCs) and Hsub2/sub adsorption because of their unique molecular sieving properties and operational simplicity. However, agglomeration of graphene sheets and low efficiency remain challenging. Therefore, we designed hierarchical nanoporous membranes (HNMs), a class of nanocomposites combined with a carbon sphere and graphene oxide. Hierarchical carbon spheres, prepared following Murray’s law using chemical activation incorporating microwave heating, act as spacers and adsorbents. Hierarchical carbon spheres preclude the agglomeration of graphene oxide, while graphene oxide sheets physically disperse, ensuring structural stability. The obtained HNMs contain micropores that are dominated by a combination of ultramicropores and mesopores, resulting in high VOCs/Hsub2/sub adsorption capacity, up to 235 and 352 mg/g at 200 ppmv and 3.3 weight % (77 K and 1.2 bar), respectively. Our work substantially expands the potential for HNMs applications in the environmental and energy fields.
机译:具有二维材料的纳米多孔膜,例如石墨烯氧化物,在挥发性有机化合物(VOC)和H 2 吸附中,吸附是引起的,因为它们独特的分子筛筛分性能和操作简单性。然而,石墨烯片的凝聚和低效率保持挑战性。因此,我们设计了一类与碳球和氧化碳氧化物组合的纳米复合材料的等级纳米多孔膜(HNMS)。使用包含掺入微波加热的化学活化,作为垫片和吸附剂的化学活化,制备等级碳球。等级碳球体妨碍了石墨烯氧化物的凝聚,而石墨烯氧化物片物理地分散,确保结构稳定性。所得的HNM含有微孔,其由超微孔和中孔的组合导合,导致高VOCS / h 2 吸附能力,高达235和352mg / g,在200ppmv和3.3重量%(77 K和1.2 BAR)分别。我们的工作大大扩展了环境和能源领域中HNMS应用的潜力。

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