Scalable Hollow Fiber Adsorbents for Metal Ion Recovery via Selective In-Pore MOF-808 Growth under Aqueous Conditions

  • Lee, Ho Jun; 
  • Lee, Cheol; 
  • Shin, Ju Ho; 
  • An, Heseong; 
  • Lee, Go Gi; 
  • ... Lee, Jong Suk
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초록

Selective in situ growth of metal-organic frameworks (MOFs) within polymeric supports under mild, aqueous conditions remains a synthetic challenge due to interfacial instability, uncontrolled crystallization, and MOF leaching. Here, this study reports a binding-assisted strategy for the selective in-pore growth of MOF-808 within polyacrylonitrile (PAN)/polyvinyl pyrrolidone (PVP) hollow fibers at 30 degrees C. Alkaline hydrolysis of PAN introduces anchoring sites for zirconium clusters, while ethanol-assisted solvation promotes MOF crystallization under ambient conditions. The spatial distribution and surface charge of hydrolyzed PVP suppress MOF nucleation on the outer surface, enabling uniform in-pore growth with 34 wt.% loading and > 99% retention after ultrasonication. Post-synthetic functionalization with ethylenediaminetetraacetic acid (EDTA) imparts a strong affinity for Pb2+, Ni2+, and Co2+ ions. The EDTA-modified composite exhibits a 2.5-fold increase in Pb2+ adsorption kinetics compared to physically blended counterparts. A modularized 105 cm fiber unit effectively treats 1 L of a mixed-metal solution (10 ppm each), underscoring the scalability and process compatibility of this approach. This work demonstrates a mild, scalable, and leaching-resistant route for fabricating MOF-polymer hybrid sorbents through spatially controlled in-pore crystallization, offering a robust platform for water treatment and metal recovery applications.

키워드

aqueous-phase synthesis; In-pore MOF crystallization; leaching-resistant composites; metal ion capture; MOF-polymer hybrid fiber sorbents; HEAVY-METAL; ORGANIC FRAMEWORKS; LOW-COST; ADSORPTION; POLYACRYLONITRILE; MEMBRANES; REMOVAL; SURFACE; NANOCOMPOSITES; PERFORMANCE
제목
Scalable Hollow Fiber Adsorbents for Metal Ion Recovery via Selective In-Pore MOF-808 Growth under Aqueous Conditions
저자
Lee, Ho Jun; Lee, Cheol; Shin, Ju Ho; An, Heseong; Lee, Go Gi; Lee, Jong Suk
DOI
10.1002/advs.202511437
발행일
2026-01
유형
Article
저널명
Advanced Science
권
13
호
5