AI Article Synopsis

  • * A novel method is introduced using dual defective alkylamine-modulated zeolitic imidazolate framework-8 (DAZIF-8) with specific zinc ligands that enhance coordination and performance.
  • * The resulting polyimide/DAZIF-8 MMM shows a remarkable increase in ethylene permeability while maintaining selectivity, exceeding traditional limits for ethylene/ethane separation.

Article Abstract

Defect engineering of metal-organic frameworks (MOFs) is a promising strategy for tailoring the interfacial characteristics between MOFs and polymers, aiming to create high-performance mixed matrix membranes (MMMs). This study introduces a new approach using dual defective alkylamine (AA)-modulated zeolitic imidazolate framework-8 (DAZIF-8), to develop high-flux MMMs. Tributylamine (TBA) and triethylamine (TEA) monodentate ligands coordinate with zinc ions in varying compositions. A mixture of Zn(CHCOO)·2HO:2-methylimidazole (Mim):AA in a 1:1.75:5 molar ratio facilitates high-yield coordination between Zn and multiple organic ligands, including Zn-Mim, Zn-TEA, and Zn-TBA (>80%). Remarkably, DAZIF-8 containing 3 mol% TBA and 2 mol% TEA exhibits exceptional characteristics, such as a Brunauer-Emmett-Teller surface area of 1745 m g and enhanced framework rigidity. Furthermore, dual Zn-AA coordination sites on the framework's outer surface enhance compatibility with the polyimide (PI) matrix through electron donor-acceptor interactions, enabling the fabrication of high-loading MMMs with excellent mechanical durability. Importantly, the PI/DAZIF-8 (60/40 w/w) MMM demonstrates an unprecedented 759% enhancement in ethylene (CH) permeability (281 Barrer) with a moderate ethylene/ethane (CH/CH) selectivity of 2.95 compared to the PI, surpassing the polymeric upper limit for CH/CH separation.

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Source
http://dx.doi.org/10.1002/smll.202401594DOI Listing

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