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Novel adjustable monolayer carbon nitride membranes for high-performance saline water desalination

机译:用于高性能盐水脱盐的新型调节单层碳氮化物膜

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摘要

In this study, via molecular dynamic simulations, we showed that the latest described graphene-like carbon nitride membranes, such as g-C4N3, g-C6N6, and g-C3N4 single-layers, can be used as high-performance membranes for water desalination. In addition to having inherent nanopores and extraordinary mechanical properties, the carbon nitride membranes have high water permeability and strong ion rejection (IR) capability. The important point about carbon nitride membranes is that the open or closed state of the pores can be changed by applying tensile stress and creating a positive strain on the membrane. The effect of the imposed pressure, the tensile strain, the ion concentration, and the effective pore size of the membranes are reported. It is demonstrated that, with the applied tensile strain of 12%, the g-C6N6 membrane is the best purification membrane, with a water permeability of 54.16 l cm(-2) d(-1) MPa-1 and the IR of 100%. Its water permeability is one order of magnitude greater than other one-atom-thick membranes.
机译:在这项研究中,通过分子动力学模拟,我们表明,最新描述的石墨烯状氮化碳膜,如g-C4N3、g-C6N6和g-C3N4单层,可以用作海水淡化的高性能膜。除了具有固有的纳米孔和非凡的机械性能外,氮化碳膜还具有较高的透水性和较强的离子排斥(IR)能力。关于氮化碳膜的重要一点是,通过施加拉伸应力并在膜上产生正应变,可以改变孔隙的打开或关闭状态。报道了外加压力、拉伸应变、离子浓度和膜的有效孔径的影响。结果表明,在拉伸应变为12%的情况下,g-C6N6膜是最好的纯化膜,其透水性为54.16L cm(-2)d(-1)MPa-1,红外光谱为100%。它的透水性比其他单原子厚的膜大一个数量级。

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