Herein, we report how merging and clipping nets in metal-organic frameworks (MOFs) can be controlled in a single-crystal-to-single-crystal fashion using three different approaches─the merged net, clip-off chemistry, and linker reinstallation─to design and synthesize three- and two-merged net MOFs. Initially, we show the formation of three isoreticular three-merged net MOFs by linking a trimeric Sc3+ cluster, Sc3(μ3-Ο)(−COO)6, with ditopic zigzag and tritopic linkers. The resulting MOFs exhibit three-merged edge-transitive nets─kgd + hxl + pcu─for the first time. Then, using these three-merged net MOFs as precursors, we selectively remove one of these subnets, the hxl net, via clip-off chemistry to form two-merged net MOFs. This process involves the cleavage of olefinic groups via ozonolysis, providing the resulting two-merged net MOFs with free carboxylic acid groups that can be used to tune their sorption properties such as the removal of cationic organic pollutants. Finally, we use the linker reinstallation approach to convert the two-merged net MOFs back to the three-merged net MOFs. This approach allows for the postsynthetic addition of the previously removed hxl merged net, enabling recovery of the initial three-merged net MOFs or synthesis of new ones using novel ditopic zigzag linkers.

Merging and Clipping Nets for the Synthesis of Three- and Two-Merged Net Metal–Organic Frameworks / Y. Yang, P. Fernández-Seriñán, B. Ortín-Rubio, P. Samanta, F. Gándara, D.M. Proserpio, D. Nam, J. Juanhuix, I. Imaz, D. Maspoch. - In: JOURNAL OF THE AMERICAN CHEMICAL SOCIETY. - ISSN 0002-7863. - 147:1(2024 Dec 23), pp. 1344-1355. [10.1021/jacs.4c15936]

Merging and Clipping Nets for the Synthesis of Three- and Two-Merged Net Metal–Organic Frameworks

D.M. Proserpio;
2024

Abstract

Herein, we report how merging and clipping nets in metal-organic frameworks (MOFs) can be controlled in a single-crystal-to-single-crystal fashion using three different approaches─the merged net, clip-off chemistry, and linker reinstallation─to design and synthesize three- and two-merged net MOFs. Initially, we show the formation of three isoreticular three-merged net MOFs by linking a trimeric Sc3+ cluster, Sc3(μ3-Ο)(−COO)6, with ditopic zigzag and tritopic linkers. The resulting MOFs exhibit three-merged edge-transitive nets─kgd + hxl + pcu─for the first time. Then, using these three-merged net MOFs as precursors, we selectively remove one of these subnets, the hxl net, via clip-off chemistry to form two-merged net MOFs. This process involves the cleavage of olefinic groups via ozonolysis, providing the resulting two-merged net MOFs with free carboxylic acid groups that can be used to tune their sorption properties such as the removal of cationic organic pollutants. Finally, we use the linker reinstallation approach to convert the two-merged net MOFs back to the three-merged net MOFs. This approach allows for the postsynthetic addition of the previously removed hxl merged net, enabling recovery of the initial three-merged net MOFs or synthesis of new ones using novel ditopic zigzag linkers.
English
Settore CHEM-03/A - Chimica generale e inorganica
Articolo
Esperti anonimi
Ricerca di base
Pubblicazione scientifica
   Nature Inspired Crystal Engineering (NICE)
   NICE
   MINISTERO DELL'ISTRUZIONE E DEL MERITO
   2020Y2CZJ2_004

   Clip-off Chemistry: Design and Synthesis of New Materials via Programmable Disassembly of Reticular Materials
   CLIPOFF-CHEM
   European Commission
   Horizon 2020 Framework Programme
   101019003
23-dic-2024
American Chemical Society
147
1
1344
1355
12
Pubblicato
Periodico con rilevanza internazionale
crossref
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info:eu-repo/semantics/article
Merging and Clipping Nets for the Synthesis of Three- and Two-Merged Net Metal–Organic Frameworks / Y. Yang, P. Fernández-Seriñán, B. Ortín-Rubio, P. Samanta, F. Gándara, D.M. Proserpio, D. Nam, J. Juanhuix, I. Imaz, D. Maspoch. - In: JOURNAL OF THE AMERICAN CHEMICAL SOCIETY. - ISSN 0002-7863. - 147:1(2024 Dec 23), pp. 1344-1355. [10.1021/jacs.4c15936]
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Y. Yang, P. Fernández-Seriñán, B. Ortín-Rubio, P. Samanta, F. Gándara, D.M. Proserpio, D. Nam, J. Juanhuix, I. Imaz, D. Maspoch...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1152775
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