Organometallic chemistry using partially fluorinated benzenes
File(s)
Author(s)
Pike, SD
Crimmin, MR
Chaplin, AB
Type
Journal Article
Abstract
Fluorobenzenes, in particular fluorobenzene (FB) and 1,2-difluorobenzene (1,2-DiFB), are increasingly becoming recognised as versatile solvents for conducting organometallic chemistry and transition-metal-based catalysis. The presence of fluorine substituents reduces the available π-electron density and consequently fluorobenzenes generally bind weakly to metal centres, allowing them to be used as essentially non-coordinating solvents or as readily displaced ligands. In this context, examples of well-defined complexes of fluorobenzenes are discussed, including trends in binding strength with increasing fluorination and different substitution patterns. Compared to more highly fluorinated benzenes, FB and 1,2-DiFB typically demonstrate greater chemical inertness, however, C–H and C–F bond activation reactions can be induced using appropriately reactive transition metal complexes. Such reactions are surveyed, including catalytic examples, not only to provide perspective for the use of FB and 1,2-DiFB as innocent solvent media, but also to highlight opportunities for their exploitation in contemporary organic synthesis.
Date Issued
2017-03-17
Date Acceptance
2017-01-23
Citation
Chemical Communications, 2017, 53, pp.3615-3633
ISSN
1364-548X
Publisher
Royal Society of Chemistry
Start Page
3615
End Page
3633
Journal / Book Title
Chemical Communications
Volume
53
Copyright Statement
This journal is © The Royal Society of Chemistry 2017
Sponsor
The Royal Society
Commission of the European Communities
Commission of the European Communities
Grant Number
UF090149
655474
677367
Subjects
Organic Chemistry
03 Chemical Sciences
Publication Status
Published