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Redox-active monolayers on nano-scale silicon electrodes
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Citations
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References
2005
Year
Redox-active FerrocenesChemical EngineeringEngineeringElectrode-electrolyte InterfaceNanomaterialsNanotechnologyNanoelectronicsSurface ScienceApplied PhysicsRedox-active MonolayersNano-scale Electrolyte-molecule-silicon CapacitorsUniform ArraysChemistrySilicon On InsulatorSurface NanoengineeringElectrochemistry
Uniform arrays of nano-scale electrolyte-molecule-silicon capacitors have been successfully fabricated. This was done by a combination of reactive ion etch and a selective wet etch through an anodic aluminium oxide mask to form nano-holes in silicon oxide/silicon nitride insulator layers on silicon. Self-assembled monolayers of 4-ferrocenylbenzyl alcohol were then attached to the exposed silicon surfaces at the bottom of the nano-holes. Characterization by conventional capacitance and conductance techniques showed very high capacitance and conductance peaks near -0.6 V, that were attributed to the charging and discharging of electrons into and from discrete levels in the monolayer owing to the presence of the redox-active ferrocenes.
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