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◆ Inorganic Chemistry2025-12-22· Chemistry

Boosting Record Xe Uptake for Efficient Xe/Kr Separation under High Humidity in a Cage-Based MOF with Open Metal Sites

Xingye Cui, Jixiang Yue, H. Li, Yingying Zhang, Hongliang Huang, H. Yang, Lei Gan

原始摘要(英文原文)· Original abstract
Adsorptive separation of xenon (Xe) and krypton (Kr) is a promising yet challenging technique due to their similar physical properties. In this work, we present a microporous metal–organic framework (MOF) with open metal sites exposed on the small caged pores for efficient Xe/Kr separation. The cage-based MOF, Cu-BTA, features well-defined permanent pores and exhibits record-high Xe gravimetric and exceptionally high volumetric uptake capacities of 7.61 mmol g –1 and 7.54 mmol cm –3 at 298 K and 100 kPa. Breakthrough experiments confirm its excellent separation performance for 20:80 Xe/Kr mixtures under both dry and highly humid conditions with the highest dynamic Xe uptake of 4.92 mmol g –1 . Moreover, the material demonstrates efficient Xe capture even at an ultralow concentration (400 ppm), suggesting its great potential for removing radioactive Xe from used nuclear fuel (UNF) reprocessing off-gas.
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Boosting Record Xe Uptake for Efficient Xe/Kr Separation under High Humidity in a Cage-Based MOF with Open Metal Sites — 科研速览 Science Skim