Publication | Closed Access
Role of Solvent Dielectric Properties on Charge Transfer from PbS Nanocrystals to Molecules
84
Citations
46
References
2009
Year
EngineeringCharge TransferModified Marcus TheoryColloidal NanocrystalsChemistryCharge TransportPhotovoltaicsOrganic SolventNanoscale ChemistryCharge SeparationCharge ExtractionCharge Carrier TransportSolvent Dielectric ConstantMaterials ScienceNanotechnologySolvent Dielectric PropertiesPbs NanocrystalsNano ApplicationNanocrystalline MaterialOrganic Charge-transfer CompoundNanomaterialsApplied Physics
Transfer of photoexcited charge from PbS nanocrystals to ligand molecules is investigated in different solvents. We find that the charge transfer rate increases dramatically with solvent dielectric constant. This trend is accounted for by a modified Marcus theory that incorporates only static dielectric effects. The choice of solvent allows significant control of the charge transfer process. As an important example, we find that PbS nanocrystals dispersed in water exhibit charge transfer rates 1000 times higher than the same nanocrystals in organic solvent. Rapid charge extraction will be important to efficient nanocrystal-based photovoltaic and photodetector devices.
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