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Tunable, Strain-Controlled Nanoporous MoS2 Filter for Water Desalination

机译:可调谐,应变控制的纳米多孔MoS2过滤器,用于淡化海水

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The deteriorating state of global fresh water resources represents one of the most serious challenges that scientists and policymakers currently face. Desalination technologies, which are designed to extract potable water from the planet's bountiful stores of seawater, could serve to alleviate much of the stress that presently plagues fresh water supplies. In recent decades, desalination methods have improved via water filtering architectures based on nanoporous graphene filters and artificial membranes integrated with biological water channels. Here, we report the auspicious performance (in simulations) of an alternative nanoporous desalination filter constructed from a MoS2 nanosheet. In striking contrast to graphene-based filters, we find that the "open" and "closed" states of the MoS2 filter can be regulated by the introduction of mechanical strain, yielding a highly tunable nanopore interface. By applying lateral strain to the MoS2 filter in our simulations, we see that the transition point between "open" and "closed" states occurs under tension that induces about 6% cross-sectional expansion in the membrane (6% strain); the open state of the MoS2 filter demonstrates high water transparency and a strong salt filtering capability even under 12% strain. Our results thus demonstrate the promise of a controllable nanoporous MoS2 desalination filter, wherein the morphology and size of the central nanopore can be precisely regulated by tensile strain. These findings support the design and proliferation of tunable nanodevices for filtration and other applications.
机译:全球淡水资源的恶化状况是科学家和政策制定者当前面临的最严峻挑战之一。淡化技术旨在从地球上丰富的海水中提取饮用水,该技术可以缓解目前困扰淡水供应的大部分压力。近几十年来,通过基于纳米多孔石墨烯过滤器和与生物水通道集成在一起的人造膜的水过滤结构,淡化方法得到了改进。在这里,我们报告了由MoS2纳米片构成的另一种纳米多孔脱盐过滤器的吉利性能(在模拟中)。与基于石墨烯的过滤器形成鲜明对比的是,我们发现MoS2过滤器的“打开”和“关闭”状态可以通过引入机械应变来调节,从而产生高度可调的纳米孔界面。通过在我们的模拟中向MoS2过滤器施加横向应变,我们看到“打开”和“闭合”状态之间的过渡点发生在张力下,该张力在膜中引起大约6%的横截面膨胀(6%应变); MoS2过滤器的打开状态显示了很高的水透明性,即使在12%的应变下也具有很强的盐过滤能力。因此,我们的结果证明了可控的纳米多孔MoS2脱盐滤池的前景,其中中心纳米孔的形态和大小可以通过拉伸应变精确调节。这些发现支持用于过滤和其他应用的可调谐纳米器件的设计和扩散。

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