Palladium-Based Metal Organic Frameworks as Heterogeneous Catalysts for C-C Couplings
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Palladium-Based Metal Organic Frameworks as Heterogeneous Catalysts for C-C CouplingsAutoria
Data de publicació
2022-07-12Editor
WileyCita bibliogràfica
LAWRENCE, Arputham Shophia, et al. Palladium‐Based Metal Organic Frameworks as Heterogeneous Catalysts for C− C Couplings. ChemCatChem, 2022, p. e202200403.Tipus de document
info:eu-repo/semantics/articleVersió
info:eu-repo/semantics/submittedVersionParaules clau / Matèries
Resum
Among the various cross coupling reactions, C−C cross coupling reaction has attracted many researchers to investigate in the last four decades. The continuous, constant, and consistent progress in this field fetched ... [+]
Among the various cross coupling reactions, C−C cross coupling reaction has attracted many researchers to investigate in the last four decades. The continuous, constant, and consistent progress in this field fetched a Noble prize in 2010, showing the importance of this reaction in diversified fields. Among the various transition metals studied for this reaction, Pd is one of the metals that has exhibited the highest activity due to its unique features and reactivity. Although Pd-based homogeneous catalyst was the preferred choice for many researchers, the field slowly diverted towards the development of Pd-based heterogeneous catalysts for C−C coupling reactions. This is obviously due to the high cost of Pd precursor, its self-deactivation. In this context, metal organic frameworks (MOFs) are one of the solid catalysts frequently employed as host matrix for the deposition of Pd(II) salts and Pd nanoparticles. This is due to the widespread possibilities available for the functionalization of MOFs and their stability during the synthetic procedure. This review provides the design and development of Pd-based MOFs as heterogeneous catalysts for the C−C cross coupling reactions. After a brief introduction on MOFs and the importance of C−C coupling reactions, the main part of the review summarizes the catalytic data with respect to Pd(II) and Pd nanoparticles as active sites. The last section provides our views in this field for the further development in the near future. [-]
Publicat a
ChemCatChem, Volume 14, Issue 18, September 2022Entitat finançadora
University Grants Commission, New Delhi | Universitat Politècnica de València | DST-PURSE | ”la Caixa” Foundation | “Ramon y Cajal” contract | “Juan de la Cierva formación”
Codi del projecte o subvenció
ID 100010434 | LCF/BQ/PI19/11690011 | RYC2020-028681-I | FJC2018-035455-I
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