Rationally tuned micropores within enantiopure metal-organic frameworks for highly selective separation of acetylene and ethylene.
basic_science · Level V
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- Record sourced from PubMed, PMID 21343922.
- Also identified by DOI 10.1038/ncomms1206.
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Abstract
Separation of acetylene and ethylene is an important industrial process because both compounds are essential reagents for a range of chemical products and materials. Current separation approaches include the partial hydrogenation of acetylene into ethylene over a supported Pd catalyst, and the extraction of cracked olefins using an organic solvent; both routes are costly and energy consuming. Adsorption technologies may allow separation, but microporous materials exhibiting highly selective adsorption of C(2)H(2)/C(2)H(4) have not been realized to date. Here, we report the development of tunable microporous enantiopure mixed-metal-organic framework (M'MOF) materials for highly selective separation of C(2)H(2) and C(2)H(4). The high selectivities achieved suggest the potential application of microporous M'MOFs for practical adsorption-based separation of C(2)H(2)/C(2)H(4).
Medical subject headings
- Acetylene
- Chemical Fractionation
- Ethylenes
- Micropore Filters
- Models, Molecular
- Organometallic Compounds