Turning defects in metal–organic frameworks into benefits for membrane separation
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Publisher
Springer Science and Business Media LLC
Link
https://www.nature.com/articles/s44286-024-00107-4.pdf
Reference5 articles.
1. Sholl, D. S. & Lively, R. P. Seven chemical separations to change the world. Nature 532, 435–437 (2016). A comment article that highlights the importance of membrane technology in improving chemical separation processes.
2. Li, S. et al. Hydrophobic polyamide nanofilms provide rapid transport for crude oil separation. Science 377, 1555–1561 (2022). This paper reports the feasibility of molecular separation membranes in the petrochemical industry.
3. Denny, M. S. Jr, Moreton, J. C., Benz, L. & Cohen, S. M. Metal–organic frameworks for membrane-based separations. Nat. Rev. Mater. 1, 16078 (2016). A review article that highlights the application of MOFs in membrane separations.
4. Feng, X. et al. Creation of exclusive artificial cluster defects by selective metal removal in the (Zn, Zr) mixed-metal UiO-66. J. Am. Chem. Soc. 143, 21511–21518 (2021). This paper reports the creation of missing-cluster defects in UiO-66 through a bimetallic method.
5. Shearer, G. C. et al. Tuned to perfection: ironing out the defects in metal–organic framework UiO-66. Chem. Mater. 26, 4068–4071 (2014). This paper reports the temperature-dependent control over defects in UiO-66.
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