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The effect of ancillary ligands on hydrocarbon C-H bond functionalization by uranyl photocatalysts.
Rutkauskaite, Ryte; Zhang, Xiaobin; Woodward, Adam W; Liu, Yanlin; Herrera, Gabriel; Purkis, Jamie; Woodall, Sean D; Sarsfield, Mark; Schreckenbach, Georg; Natrajan, Louise S; Arnold, Polly L.
Afiliación
  • Rutkauskaite R; Department of Chemistry, University of California Berkeley California 94720 USA pla@berkeley.edu.
  • Zhang X; Lawrence Berkeley National Laboratory California 94720 USA.
  • Woodward AW; Department of Chemistry, University of Manitoba Winnipeg Manitoba R3T 2N2 Canada.
  • Liu Y; Department of Chemistry, University of Manchester Manchester M13 9PL UK louise.natrajan@manchester.ac.uk.
  • Herrera G; Department of Chemistry, University of California Berkeley California 94720 USA pla@berkeley.edu.
  • Purkis J; Department of Chemistry, University of California Berkeley California 94720 USA pla@berkeley.edu.
  • Woodall SD; Atkins (part of SNC-Lavalin Group) The Hub 500 Park Avenue, Aztec West Bristol BS32 4RZ UK.
  • Sarsfield M; UK National Nuclear Laboratory Central Laboratory, Sellafield, Seascale Cumbria CA20 1PG UK.
  • Schreckenbach G; UK National Nuclear Laboratory Central Laboratory, Sellafield, Seascale Cumbria CA20 1PG UK.
  • Natrajan LS; Department of Chemistry, University of Manitoba Winnipeg Manitoba R3T 2N2 Canada.
  • Arnold PL; Department of Chemistry, University of Manchester Manchester M13 9PL UK louise.natrajan@manchester.ac.uk.
Chem Sci ; 15(18): 6965-6978, 2024 May 08.
Article en En | MEDLINE | ID: mdl-38725516
ABSTRACT
The aqueous uranyl dication has long been known to facilitate the UV light-induced decomposition of aqueous VOCs (volatile organic compounds), via the long-lived highly efficient, uranyl excited state. The lower-energy visible light excited uranyl ion is also able to cleave unactivated hydrocarbon C-H bonds, yet the development of this reactivity into controlled and catalytic C-H bond functionalization is still in its infancy, with almost all studies still focused on uranyl nitrate as the precatalyst. Here, hydrocarbon-soluble uranyl nitrate and chloride complexes supported by substituted phenanthroline (Ph2phen) ligands are compared to each other, and to the parent salts, as photocatalysts for the functionalization of cyclooctane by H atom abstraction. Analysis of the absorption and emission spectra, and emission lifetimes of Ph2phen-coordinated uranyl complexes demonstrate the utility of the ligand in light absorption in the photocatalysis, which is related to the energy and kinetic decay profile of the uranyl photoexcited state. Density functional theory computational analysis of the C-H activation steps in the reaction show how a set of dispersion forces between the hydrocarbon substrate and the Ph2phen ligand provide control over the H atom abstraction, and provide predictions of selectivity of H atom abstraction by the uranyl oxo of the ring C-H over the ethyl C-H in an ethylcyclohexane substrate.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Chem Sci Año: 2024 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Chem Sci Año: 2024 Tipo del documento: Article
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