Literature DB >> 24376910

Mechanism of Electrophilic Fluorination with Pd(IV): Fluoride Capture and Subsequent Oxidative Fluoride Transfer.

Jochen R Brandt1, Eunsung Lee1, Gregory B Boursalian1, Tobias Ritter1.   

Abstract

Electrophilic fluorinating reagents derived from fluoride are desirable for the synthesis of 18F-labeled molecules for positron emission tomography (PET). Here, we study the mechanism by which a Pd(IV)-complex captures fluoride and subsequently transfers it to nucleophiles. The intermediate Pd(IV)-F is formed with high rates even at the nano- to micromolar fluoride concentrations typical for radiosyntheses with 18F due to fast formation of an outer-sphere complex between fluoride and Pd(IV). The subsequent fluorine transfer from the Pd(IV)-F complex is proposed to proceed through an unusual SET/fluoride transfer/SET mechanism. The findings detailed in this manuscript provide a theoretical foundation suitable for addressing a more general approach for electrophilic fluorination with high specific activity 18F PET imaging.

Entities:  

Year:  2014        PMID: 24376910      PMCID: PMC3870902          DOI: 10.1039/C3SC52367E

Source DB:  PubMed          Journal:  Chem Sci        ISSN: 2041-6520            Impact factor:   9.825


  61 in total

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Authors:  R Chirakal; R M Adams; G Firnau; G J Schrobilgen; G Coates; E S Garnett
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9.  Shape and symmetry of heptacoordinate transition-metal complexes: structural trends.

Authors:  David Casanova; Pere Alemany; Josep M Bofill; Santiago Alvarez
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  8 in total

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3.  Copper-Mediated Late-stage Radiofluorination: Five Years of Impact on Pre-clinical and Clinical PET Imaging.

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4.  Mild silver-mediated geminal difluorination of styrenes using an air- and moisture-stable fluoroiodane reagent.

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Review 6.  18F-labelled intermediates for radiosynthesis by modular build-up reactions: newer developments.

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7.  Mechanism of the Aryl-F Bond-Forming Step from Bi(V) Fluorides.

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Review 8.  High-Valent NiIII and NiIV Species Relevant to C-C and C-Heteroatom Cross-Coupling Reactions: State of the Art.

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  8 in total

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