Cobalt-Based ZIF Composite Membranes: In Situ Defect Engineering for Enhanced Water Stability and Gas Separation

  • Nam, Ki Jin
  • Mohamed, Amro M. O.
  • Seong, Jeongho
  • An, Heseong
  • Kang, Dun-Yen
  • ... Lee, Jong Suk
  • 외 1명
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초록

Porous coordination polymers with excellent molecular sieving ability, high dispersibility, and good compatibility with engineered polymer matrices hold promise for various industrial applications, such as gas separation and battery separators. Here, an in situ defect engineering approach is proposed for highly processable cobalt (Co)-based zeolitic imidazolate frameworks (ZIFs) with enhanced molecular sieving ability and water stability. By varying alkylamine (AA) modulators, the pore structures and textural properties of ZIFs can be fine-tuned. The resulting high-loading composite membrane exhibits excellent C3H6/C3H8 separation performance and mechanical properties. This in situ defect engineering approach enables efficient interfacial engineering for high-performance composite membranes.

키워드

defect modulationdefective ZIF-67hydrocarbon separationmixed matrix membranesprocessabilitywater stabilityMETAL-ORGANIC FRAMEWORKSMIXED MATRIX MEMBRANESETHYLENE/ETHANE SEPARATIONPERFORMANCEPOLYMERS
제목
Cobalt-Based ZIF Composite Membranes: In Situ Defect Engineering for Enhanced Water Stability and Gas Separation
저자
Nam, Ki JinMohamed, Amro M. O.Seong, JeonghoAn, HeseongKang, Dun-YenEconomou, Ioannis G.Lee, Jong Suk
DOI
10.1002/smll.202409515
발행일
2024-12-16
유형
Article
저널명
Small
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