Facile stabilization of a cyclodextrin metal-organic framework under humid environment via hydrogen sulfide treatment

Increasing resistance to humid environments is a major challenge for the application of γ-CD-K-MOF (a green MOF) in real-world utilisation. γ-CD-K-MOF-H S with enhanced moisture tolerance was obtained by simply treating MOF with H S gas. XPS, Raman and TGA characterizations indicated that the H S mo...

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Veröffentlicht in:RSC advances 2019-06, Vol.9 (32), p.18271-18276
Hauptverfasser: Ke, Duo, Feng, Jun-Feng, Wu, Di, Hou, Jun-Bo, Zhang, Xiao-Qin, Li, Bang-Jing, Zhang, Sheng
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Sprache:eng
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Zusammenfassung:Increasing resistance to humid environments is a major challenge for the application of γ-CD-K-MOF (a green MOF) in real-world utilisation. γ-CD-K-MOF-H S with enhanced moisture tolerance was obtained by simply treating MOF with H S gas. XPS, Raman and TGA characterizations indicated that the H S molecules coordinated with the metal centers in the framework. H S acting as a newly available water adsorption potential well near the potassium centers protects the metal-ligand coordination bond from attack by water molecules and thus improves the moisture stability of MOF. After 7 days exposure in 60% relative humidity, γ-CD-K-MOF-H S retained its crystal structure and morphology, while γ-CD-K-MOF had nearly collapsed. In addition, the formaldehyde uptake tests indicated that γ-CD-K-MOF retain their permanent porosity after interaction with H S. This simple and facile one-step strategy would open a new avenue for preparation of moisture stable MOFs for practical applications.
ISSN:2046-2069
2046-2069
DOI:10.1039/c9ra03079d