Abstract
Significantly enhanced H2/CH4 (ca. 80) selectivity was realized by effective suppression of the framework flexibility of a prepared ZIF-8 membrane. Initially a ZnO buffer layer consisting of 20 nm-sized ZnO-nanoparticle aggregates was fabricated by controlled calcination of a ZnAl-NO3 layered double hydroxide membrane. Owing to its high chemical reactivity, the ZnO buffer layer was partially converted into a well-intergrown ZIF-8 membrane with a certain penetration depth upon solvothermal treatment with ligands. Our method may represent a new concept for the design of advanced MOF membranes with high selectivity. There is still space for improvement: Alleviation of the framework flexibility enables significantly enhanced gas selectivity of pure ZIF-8 membranes, which is realized by partial conversion of calcined ZnAl-NO3 layered double hydroxide precursor membranes under solvothermal conditions. This study represents a new concept for designing advanced MOF membranes.
| Original language | English |
|---|---|
| Pages (from-to) | 3582-3586 |
| Number of pages | 5 |
| Journal | CHEMSUSCHEM |
| Volume | 8 |
| Issue number | 21 |
| DOIs | |
| Publication status | Published - 5 Nov 2015 |
Keywords
- layered compounds
- membranes
- metal-organic frameworks
- solvothermal growth
- ZnO
ASJC Scopus subject areas
- Environmental Chemistry
- General Chemical Engineering
- General Materials Science
- General Energy
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