期刊
RSC ADVANCES
卷 12, 期 50, 页码 32652-32658出版社
ROYAL SOC CHEMISTRY
DOI: 10.1039/d2ra05878b
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资金
- Addis Ababa University
A pillared-layer metal-organic framework (MOF) with a mesoporous structure was successfully synthesized at room temperature using a mixture of water and methanol as the solvent. The MOF showed good crystallinity and the formation of mesopores was revealed by N2-sorption measurements. It also exhibited an electronic band gap and magnetic properties.
A pillared-layer MOF, {[Cu-2(Fu)(2)(BPY)]center dot H2O}(n), was synthesized at room temperature employing a mixture of water and methanol as the reaction solvent. By using the sodium salts of fumarate, instead of the native acids, the target MOF could be readily prepared in aqueous media. The PXRD of this MOF was found to be in good agreement with the simulated diffractogram from single crystal data of related MOF made at a higher temperature using DMF as the solvent. In addition to characterization by PXRD, TGA, and ESEM, N-2-sorption measurements revealed the formation of mesopores in the MOF's structure under study. The electronic band gap and magnetic properties of this pillared-layer MOF were also studied.
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