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Two-Dimensional Covalent Triazine Framework Membrane for Helium Separation and Hydrogen Purification

机译:用于氦分离和氢纯化的二维共价三嗪骨架膜

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摘要

Ultrathin membranes with intrinsic pores are highly desirable for gas separation applications, because of their controllable pore sizes and homogeneous pore distribution and their intrinsic capacity for high flux. Two-dimensional (2D) covalent organic frameworks (COFs) with layered structures have periodically distributed uniform pores and can be exfoliated into ultrathin nanosheets. As a representative of 2D COFs, a monolayer triazine-based CTF-0 membrane is proposed in this work for effective separation of helium and purification of hydrogen on the basis of first-principles calculations. With the aid of diffusion barrier calculations, it was found that a monolayer CTF-0 membrane can exhibit exceptionally high He and H-2 selectivities over Ne, CO2, Ar, N-2, CO, and CH4, and the He and H-2 permeances are excellent at appropriate temperatures, superior to those of conventional carbon and silica membranes. These observations demonstrate that a monolayer CTF-0 membrane may be potentially useful for helium separation and hydrogen purification.
机译:具有固有孔的超薄膜由于其可控制的孔径和均一的孔分布以及其固有的高通量能力而非常适合用于气体分离应用。具有分层结构的二维(2D)共价有机骨架(COF)具有周期性分布的均匀孔,可以剥落成超薄纳米片。作为2D COF的代表,在这项工作中提出了一种基于三嗪的单层CTF-0膜,用于在第一性原理计算的基础上有效分离氦气和纯化氢气。借助扩散势垒计算,发现单层CTF-0膜对Ne,CO2,Ar,N-2,CO和CH4以及He和H-具有较高的He和H-2选择性2种磁导率在适当的温度下均极好,优于常规的碳膜和硅胶膜。这些观察结果表明,单层CTF-0膜可能对氦分离和氢纯化有用。

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