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首页> 外文期刊>ACS Omega >Cell-Like Behaviors of Dynamic Graphene Bubbles with Fast Water Transport
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Cell-Like Behaviors of Dynamic Graphene Bubbles with Fast Water Transport

机译:动态石墨烯气泡的细胞样行为,快速水运输

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Ultrafast water transport in graphitic nanoenvironment is fundamentally important in the research of biomimetic membranes for potential applications in separation and energy. Yet, the form of graphitic nanostructures has not been fully explored with only carbon nanotubes and graphene nanochannels reported. Here, we fabricated dynamic graphene bubbles via strain engineering of chemical vapor deposition (CVD)-grown graphene on metal substrates. These graphene bubbles could switch between an inflated state and a deflated state continuously with the control of environmental moisture flow. It is demonstrated that water vapors transport through graphene wrinkles and condense inside graphene bubbles. The water transport rates across these graphene bubbles were calculated via dynamic Newton rings, which is comparable to that of carbon nanotubes and aquaporin. The discovery of dynamic graphene bubbles hosting the ability of fast water transport is helpful for an advanced understanding of the nanofluidic phenomenon and its future applications.
机译:石墨纳米环境中的超快水运输在基本上在仿生膜的研究中的分离和能量潜在应用研究。然而,仅通过报道的碳纳米管和石墨烯纳米纳米管和石墨烯纳米,尚未完全探索石墨纳米结构的形式。在此,我们通过在金属基板上的化学气相沉积(CVD)Glordhene的应变工程制造动态石墨烯气泡。这些石墨烯气泡可以随着环境湿度流动连续地切换膨胀状态和放气状态。据证明,水蒸汽通过石墨烯皱纹运输并在石墨烯气泡内浓缩。通过动态牛顿环横跨这些石墨烯气泡的水运输速率,其与碳纳米管和水素相当。托管快速水运能力的动态石墨烯气泡的发现有助于对纳米流体现象及其未来应用的先进理解。

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