Litcius/Paper detail

The ferrocenium/ferrocene couple: a versatile redox switch

Luigi Fabbrizzi

2020ChemTexts120 citationsDOIOpen Access PDF

Abstract

Abstract Woodward and co-workers in 1952 characterised the unique structural features of ferrocene (the first sandwich compound), demonstrated its aromatic nature and observed that on treatment with mild oxidising agents (aqueous Ag 2 SO 4 , p -benzoquinone in organic solvents) the orange solution of ferrocene (Fc) turned blue due to the formation of ferrocenium (Fc + ). A few months later, the one-electron Fc/Fc + redox change was characterised polarographically by Page and Wilkinson with E 1/2 = 0.31 V vs SCE (0.56 V vs NHE) in ethanol/water 9:1. Since then ferrocene has become an icon of organometallic electrochemistry. Owing to the stability of its molecular framework, to the ease of functionalisation at the cyclopentadienyl rings and to the fast, reversible and kinetically uncomplicated Fc/Fc + redox change, ferrocene has been used as a building block for the design of switchable functional systems. In this review, we will consider (1) electrochemical sensors for metal ions, anions and metal–anion pairs operating through the Fc/Fc + redox change, (2) ferrocene-based redox switches of fluorescence and (3) cross-transport of electrons and anions through a liquid membrane mediated by lipophilic ferrocene derivatives. Graphic abstract

Topics & Concepts

FerroceneChemistryRedoxElectrochemistryCyclopentadienyl complexPhotochemistryMetalloceneAqueous solutionMetalMetal ions in aqueous solutionInorganic chemistryPolymer chemistryCombinatorial chemistryPolymerizationOrganic chemistryElectrodeCatalysisPhysical chemistryPolymerMolecular Sensors and Ion DetectionElectrochemical Analysis and ApplicationsAdvanced biosensing and bioanalysis techniques
The ferrocenium/ferrocene couple: a versatile redox switch | Litcius