Publication | Closed Access
Charge Transfer from Adsorbed Proteins
276
Citations
24
References
2004
Year
Aromatic SurfaceCharge TransferEngineeringChemistryCharge TransportElectronic DevicesNanoelectronicsCharge SeparationCharge Carrier TransportCarbon NanotubesBiophysicsProtein ChemistryBiochemistryNanotechnologyTransistor DevicesNanophysicsElectronic MaterialsConducting ChannelNatural SciencesApplied PhysicsNanotubes
We have used transistor devices with carbon nanotubes as the conducting channel to explore the interaction between the nanotube surface and streptavidin, both in dry and in buffer environments. We find charge transfer between the protein and the nanotubes in both cases. Comparison with simpler molecules allows the estimation of the transferred charge. We argue that this effect can be understood as being due to the interaction between the −NH2 groups of the protein and the aromatic surface.
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