Publication | Closed Access
Multiple-bit storage properties of porphyrin monolayers on SiO2
45
Citations
9
References
2004
Year
EngineeringOrganic ElectronicsHybrid Molecule-silicon CapacitorsMultiple-bit Storage PropertiesMolecular MonolayerChemistryPorphyrin MoleculesOrganic ElectrochemistrySiliceneBiophysicsMolecular ElectrochemistryNanotechnologyOrganic SemiconductorLayered MaterialElectrochemistryOrganic Charge-transfer CompoundNanomaterialsSurface ScienceApplied PhysicsFunctional Materials
Hybrid molecule-silicon capacitors have been fabricated by the self-assembly of a monolayer of porphyrin molecules on a silicon oxide surface. The porphyrin employed [5-(4-dihydroxyphosphorylphenyl)-10,15,20-trimesitylporphinatozinc(II)] attaches to silicon oxide via a phosphonate linkage. Cyclic voltammetry current and capacitance/conductance measurements have been used to characterize the capacitors. The presence of multiple distinct peaks in current density and capacitance/conductance measurements are associated with oxidation and reduction of the molecular monolayer. The charge-storage states of the capacitor indicate applicability for use in multiple-bit memory devices.
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