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Carrier dynamics and design optimization of electrolyte-induced inversion layer carbon nanotube-silicon Schottky junction solar cell
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Citations
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References
2012
Year
Electrical EngineeringEngineeringCarbon-based MaterialNanoelectronicsOrganic Solar CellApplied PhysicsElectrolyte-induced Inversion LayerCarrier DynamicsNumerical SimulationsCharge Carrier TransportPhotovoltaicsInduced Inversion Layer
Carrier dynamics of the electrolyte-induced inversion layer carbon nanotube-silicon Schottky junction solar cells is explored by numerical simulations. Operation mechanisms of the solar cells with and without the electrolyte-induced inversion layer are presented and compared, which clarifies the current flow mechanisms in a solar cell with an induced inversion layer. A heavily doped back contact layer can behave as a hole block layer. In addition to lowering contact resistance and surface recombination, it is particularly useful for improving carrier separation in an electrolyte-induced inversion layer solar cell or a metal-insulator-semiconductor grating solar cell.
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