Publication | Closed Access
Formation of Mixed Organic Layers by Stepwise Electrochemical Reduction of Diazonium Compounds
44
Citations
33
References
2012
Year
Chemical EngineeringEngineeringBithiophene PhenylOrganic ElectrochemistryMolecular ElectrochemistrySurface ElectrochemistryBtb OligomersStepwise Electrochemical ReductionElectrosynthesisOrganic ChemistryMixed Organic LayersChemistryDiazonium CompoundsCarbon ElectrodeElectrode Reaction MechanismElectrochemistryElectrochemical Surface Science
This work describes the formation of a mixed organic layer covalently attached to a carbon electrode. The strategy adopted is based on two successive electrochemical reductions of diazonium salts. First, bithiophene phenyl (BTB) diazonium salt is reduced using host/guest complexation in a water/cyclodextrin (β-CD) solution. The resulting layer consists of grafted BTB oligomers and cyclodextrin that can be removed from the surface. The electrochemical response of several outer-sphere redox probes on such BTB/CD electrodes is close to that of a diode, thanks to the easily p-dopable oligo(BTB) moieties. When CD is removed from the surface, pinholes are created and this diode like behavior is lost. Following this, nitrophenyl (NP) diazonium is reduced to graft a second component. Electrochemical study shows that upon grafting NP insulating moieties, the diode-like behavior of the layer is restored which demonstrates that NP is grafted predominately in the empty spaces generated by β-CD desorption. As a result, a mixed BTB/NP organic layer covalently attached to a carbon electrode is obtained using a stepwise electrochemical reduction of two diazonium compounds.
| Year | Citations | |
|---|---|---|
Page 1
Page 1