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Charged Layered Boron Nitride-Nanoflake Membranes for Efficient Ion Separation and Water Purification

机译:带电的分层氮化硼 - 纳米蛋白膜,用于有效的离子分离和净水净化

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摘要

2D layered nanomaterials have attracted considerable attention for their potential for highly efficient separations, among other applications. Here, a 2D lamellar membrane synthesized using hexagonal boron nitride nanoflakes (h-BNF) for highly efficient ion separation is reported. The ion-rejection performance and the water permeance of the membrane as a function of the ionic radius, ion valance, and solution pH are investigated. The nonfunctionalized h-BNF membranes show excellent ion rejection for small sized salt ions as well as for anionic dyes (>97%) while maintaining a high water permeability, ≈1.0 × 10~(-3) L m m~(-2) h~(-1) bar~(-1)). Experiments show that the ion-rejection performance of the membrane can be tuned by changing the solution pH. The results also suggest that the rejection is influenced by the ionic size and the electrostatic repulsion between fixed negative charges on the BN surface and the mobile ions, and is consistent with the Donnan equilibrium model. These simple-to-fabricate h-BNF membranes show a unique combination of excellent ion selectivity and high permeability compared to other 2D membranes.
机译:2D分层纳米材料引起了相当大的关注,在其它应用中具有高效分离的可能性。这里,报道了使用用于高效离子分离的六边形氮化硼纳米薄膜(H-BNF)合成的2D层状膜。研究了作为离子半径,离子算法和溶液pH的函数的离子抑制性能和膜的水渗透。非功能化H-BNF膜显示出小型盐离子以及阴离子染料(> 97%)的优异离子排斥,同时保持高水渗透性,≈1.0×10〜(-3)L mm〜(2)H. 〜(-1)条〜(-1))。实验表明,可以通过改变溶液pH来调节膜的离子排斥性能。结果还表明,排斥反应受到离子尺寸的影响,并且在BN表面和移动离子上固定负电荷之间的静电排斥,并且与唐纳均衡模型一致。与其他2D膜相比,这些简单致的H-BNF膜显示出优异的离子选择性和高渗透性的独特组合。

著录项

  • 来源
    《Small》 |2019年第49期|共8页
  • 作者单位

    Department of Chemical Engineering University of Illinois at Chicago Chicago IL 60607 USA;

    Department of Mechanical and Aerospace Engineering Rutgers University Piscataway NJ 08854 USA;

    Department of Chemical Engineering University of Illinois at Chicago Chicago IL 60607 USA;

    Department of Chemical Engineering University of Illinois at Chicago Chicago IL 60607 USA;

    Department of Chemical Engineering University of Illinois at Chicago Chicago IL 60607 USA;

    Department of Chemical Engineering University of Illinois at Chicago Chicago IL 60607 USA;

    Department of Chemical Engineering University of Illinois at Chicago Chicago IL 60607 USA;

    Department of Chemical Engineering University of Illinois at Chicago Chicago IL 60607 USA;

    Department of Mechanical and Aerospace Engineering Rutgers University Piscataway NJ 08854 USA;

    Department of Chemical Engineering University of Illinois at Chicago Chicago IL 60607 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    2D nanosheets; boron nitride; ion selectivity; layered materials; nanostructured membranes;

    机译:2D纳米片;氮化硼;离子选择性;层状材料;纳米结构膜;

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