Publication | Open Access
Comparison of carrier transport mechanism under UV/Vis illumination in an AZO photodetector and an AZO/p-Si heterojunction photodiode produced by spray pyrolysis
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Citations
46
References
2015
Year
EngineeringZinc OxidePhoto-electrochemical CellAzo LayerPhotoelectrochemistryPhotovoltaicsPhotoelectric SensorPhotodetectorsOptical PropertiesCompound SemiconductorElectrical EngineeringPhotochemistrySemiconductor MaterialPhotoelectric MeasurementAzo PhotodetectorSpray PyrolysisCarrier Transport MechanismApplied PhysicsVisible IlluminationOptoelectronics
In this study, Aluminum doped Zinc Oxide (AZO) layer is deposited on p-type silicon (p-Si) by spray pyrolysis method to fabricate ultraviolet-visible (UV/Vis) photodetector as Al doping process can have positive effect on the photodetector performance. Morphology, crystalline structure, and Al concentration of AZO layer are investigated by SEM, XRD, and EDX. The goal of this study is to analyze the mechanism of carrier transport by means of current-voltage characteristics under UV/Vis illumination in two cases: (a) electrodes connected to the surface of AZO layer and (b) electrodes connected to cross section of heterojunction (AZO/p-Si). Measurements indicate that the AZO/p-Si photodiode exhibits a higher photocurrent and lower photoresponse time under visible illumination with respect to AZO photodetector; while under UV illumination, the above result is inversed. Besides, the internal junction field of AZO/p-Si heterojunction plays an important role on this mechanism.
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