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Polyamide nanofiltration membrane with highly uniform sub-nanometre pores for sub-1?? precision separation

机译:聚酰胺纳米过滤膜,具有高度均匀的亚纳米孔,用于亚1 ??精确分离

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Separating molecules or ions with sub-Angstrom scale precision is important but technically challenging. Achieving such a precise separation using membranes requires Angstrom scale pores with a?high level of pore size uniformity. Herein, we demonstrate that precise solute-solute separation can be achieved using polyamide membranes formed via surfactant-assembly regulated interfacial polymerization (SARIP). The dynamic, self-assembled network of surfactants facilitates faster and more homogeneous diffusion of amine monomers across the water/hexane interface during interfacial polymerization, thereby forming a polyamide active layer with more uniform sub-nanometre pores compared to those formed via conventional interfacial polymerization. The polyamide membrane formed by SARIP exhibits highly size-dependent sieving of solutes, yielding a step-wise transition from low rejection to near-perfect rejection over a solute size range smaller than half Angstrom. SARIP represents an approach for the scalable fabrication of ultra-selective membranes with uniform nanopores for precise separation of ions and small solutes.
机译:分离分子或离子尺寸精度的分子或离子是重要的,但在技术上是具有挑战性的。使用膜实现这种精确的分离需要埃克斯特罗姆尺寸孔,孔径均匀均匀。在此,我们证明了可以使用通过表面活性剂组装调节界面聚合(Sarip)形成的聚酰胺膜来实现精确的溶质溶质分离。动态,自组装网络的表面活性剂网络在界面聚合过程中促进水/己烷界面的胺单体的速度和更均匀地扩散,从而与通过常规界面聚合形成的那些形成具有更均匀的亚纳米孔的聚酰胺活性层。由Sarip形成的聚酰胺膜表现出高度依赖性筛选的溶质,从低于小于半埃的溶质尺寸范围内从低拒绝到接近完美的抑制,产生逐步转变。 Sarip表示具有均匀纳米孔的超选择性膜的可伸缩制造的方法,用于精确地分离离子和小溶质。

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