Gas-sieving zeolitic membranes fabricated by condensation of precursor nanosheets

材料科学 选择性 分子筛 化学工程 方解石 沸石 产量(工程) 剥脱关节 纳米技术 有机化学 催化作用 化学 石墨烯 复合材料 工程类 生物化学
作者
Mostapha Dakhchoune,Luis Francisco Villalobos,Rocío Semino,Lingmei Liu,Mojtaba Rezaei,Pascal Schouwink,Claudia E. Avalos,Paul Baade,Vanessa Wood,Yu Han,Michele Ceriotti,Kumar Varoon Agrawal
出处
期刊:Nature Materials [Springer Nature]
卷期号:20 (3): 362-369 被引量:97
标识
DOI:10.1038/s41563-020-00822-2
摘要

The synthesis of molecular-sieving zeolitic membranes by the assembly of building blocks, avoiding the hydrothermal treatment, is highly desired to improve reproducibility and scalability. Here we report exfoliation of the sodalite precursor RUB-15 into crystalline 0.8-nm-thick nanosheets, that host hydrogen-sieving six-membered rings (6-MRs) of SiO4 tetrahedra. Thin films, fabricated by the filtration of a suspension of exfoliated nanosheets, possess two transport pathways: 6-MR apertures and intersheet gaps. The latter were found to dominate the gas transport and yielded a molecular cutoff of 3.6 A with a H2/N2 selectivity above 20. The gaps were successfully removed by the condensation of the terminal silanol groups of RUB-15 to yield H2/CO2 selectivities up to 100. The high selectivity was exclusively from the transport across 6-MR, which was confirmed by a good agreement between the experimentally determined apparent activation energy of H2 and that computed by ab initio calculations. The scalable fabrication and the attractive sieving performance at 250–300 °C make these membranes promising for precombustion carbon capture. Zeolite membranes can be used for gas molecular sieving, but synthesis requires complex hydrothermal treatment. Here, single layers of zeolite precursor RUB-15 are exfoliated followed by a condensation reaction, forming zeolite membranes with H2/CO2 selectivity of 20 to 100 in a facile process.
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