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Structure-dependent water transport across nanopores of carbon nanotubes: toward selective gating upon temperature regulation

机译:碳纳米管的纳米孔上与结构有关的水传输:在温度调节下朝向选择性浇口

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摘要

Determining water structure in nanopores and its influence on water transport behaviour is of great importance for understanding and regulating the transport across nanopores. Here we report an ultrafast-slow flow transition phenomenon for water transport across nanopores of carbon nanotubes owing to the change in water structure in nanopores induced by temperature. By performing extensive molecular dynamics simulations, we show the dependence of water transport behaviours on water structures. Our results indicate that owing to the change in water structure in nanopores, water flux across nanopores with certain pore sizes decreases sharply (nearly 3 orders of magnitude) with the decreasing temperature. This phenomenon is very sensitive to the pore size. The threshold temperatures for the occurrence of the ultrafast-slow flow transition for water transport are also determined for various pore sizes. These findings suggest a novel protocol for selective gating of water and proton conduction across nanopores and temperature-controlled drug release.
机译:确定纳米孔中的水结构及其对水传输行为的影响,对于理解和调节跨纳米孔的传输非常重要。在这里,我们报告了由于温度引起的纳米孔中水结构的变化,水在碳纳米管的纳米孔中传输的超快-慢流动过渡现象。通过执行广泛的分子动力学模拟,我们显示了水的运输行为对水结构的依赖性。我们的结果表明,由于纳米孔中水结构的变化,具有一定孔径的纳米孔中的水通量随温度降低而急剧下降(接近3个数量级)。这种现象对孔径非常敏感。还针对各种孔径确定了发生用于水传输的超快速-缓慢流动过渡的阈值温度。这些发现提出了用于水和质子在纳米孔中的选择性门控和温度控制的药物释放的新方案。

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