Pore Engineering of Covalently Connected Metal-Organic Framework Nanoparticle-Mixed-Matrix Membrane Composites for Molecular Separation

  • Lee, Jooyeon; 
  • Satheeshkumar, Chinnadurai; 
  • Yu, Hyun Jung; 
  • Kim, Seongwoo; 
  • Lee, Jong Suk; 
  • 외 2명
Citations

WEB OF SCIENCE

24
Citations

SCOPUS

25

초록

Fine-tuning and pore environment control of covalently connected metal-organic framework (MOF) and mixed-matrix membrane (MMM) composite materials were achieved. Core-shell-type, dual-functionalized, zirconium-based MOFs were prepared through a postsynthetic ligand exchange (PSE) process, and active vinyl functionalities on the surface of MOF nanoparticles were utilized for polymerization by forming interfacial-covalent connections between MOF nanoparticles and polymeric membranes via thiol-ene click photopolymerization. The target functionality of the MOF pore originated from the parent MOFs, allowing pore engineering of the MOF-MMM composite materials. A series of defect-free, interface-controlled, and core-functionalized MOF-MMMs were prepared through the present methodology, and the NO2-functionalized/covalently connected MOF-MMM showed the highest CO2 permeability and solubility without loss of selectivity. This facile and versatile approach will be useful for the fabrication of functional MOF nanoparticle-based membranes for various applications, such as catalysis and separation.

키워드

metal-organic frameworks; mixed-matrix membranes; MOF nanoparticle; postsynthetic exchange; pore-engineering; POSTSYNTHETIC LIGAND-EXCHANGE; UIO-66; MOF; FUNCTIONALIZATION; NMOF
제목
Pore Engineering of Covalently Connected Metal-Organic Framework Nanoparticle-Mixed-Matrix Membrane Composites for Molecular Separation
저자
Lee, Jooyeon; Satheeshkumar, Chinnadurai; Yu, Hyun Jung; Kim, Seongwoo; Lee, Jong Suk; Seo, Myungeun; Kim, Min
DOI
10.1021/acsanm.0c01982
발행일
2020-09-25
유형
Article
저널명
ACS Applied Nano Materials
권
3
호
9
페이지
9356 ~ 9362