Publication | Open Access
Nano-Electrochemistry and Nano-Electrografting with an Original Combined AFM-SECM
15
Citations
33
References
2013
Year
Materials ScienceElectroactive MaterialChemical EngineeringAryl Diazonium SaltsEngineeringNanoscale ChemistryNanomaterialsNanotechnologyCombined TechniqueSurface ElectrochemistryMolecular ElectrochemistryElectroanalytical SensorChemistryElectrochemical MicroscopyElectrochemical InterfaceElectrochemistry
This study demonstrates the advantages of the combination between atomic force microscopy and scanning electrochemical microscopy. The combined technique can perform nano-electrochemical measurements onto agarose surface and nano-electrografting of non-conducting polymers onto conducting surfaces. This work was achieved by manufacturing an original Atomic Force Microscopy-Scanning ElectroChemical Microscopy (AFM-SECM) electrode. The capabilities of the AFM-SECM-electrode were tested with the nano-electrografting of vinylic monomers initiated by aryl diazonium salts. Nano-electrochemical and technical processes were thoroughly described, so as to allow experiments reproducing. A plausible explanation of chemical and electrochemical mechanisms, leading to the nano-grafting process, was reported. This combined technique represents the first step towards improved nano-processes for the nano-electrografting.
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