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High-Purity Ultraviolet Electroluminescence from n-ZnO Nanowires/p(+)-Si Heterostructure LEDs with i-MgO Film as Carrier Control Layer
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- Title
- High-Purity Ultraviolet Electroluminescence from n-ZnO Nanowires/p(+)-Si Heterostructure LEDs with i-MgO Film as Carrier Control Layer
- Issued Date
- 2012
- Citation
- Jung, Byung Oh. (2012). High-Purity Ultraviolet Electroluminescence from n-ZnO Nanowires/p(+)-Si Heterostructure LEDs with i-MgO Film as Carrier Control Layer. Journal of the Electrochemical Society, 159(2), H102–H106. doi: 10.1149/2.029202jes
- Type
- Article
- Keywords
- Active Layer ; Asymmetric Bands ; CHemICAL-VAPOR-DEPOSITION ; Control Layers ; Current Voltage Characteristics ; Current Voltage Curve ; Dielectric Layer ; Electroluminescence ; Electron Accumulation ; Fabrication ; Forward Bias ; Heterojunctions ; High-Purity ; Hole Tunneling ; LIGHT-emITTING-DIODES ; Light emitting Diodes ; Metallorganic Chemical Vapor Deposition ; Nanowires ; Rectifying Characteristics ; Silicon ; Ultraviolet Electroluminescence ; Ultraviolet Lights ; UV emissions ; Visible emissions ; Zinc Oxide ; ZnO ; ZnO Nanowires
- ISSN
- 0013-4651
- Abstract
-
Pure ultraviolet (UV) light emitting diodes (LEDs) using n-ZnO nanowires as an active layer were fabricated with an insulating MgO dielectric layer as a carrier control layer, where all depositions were continuously performed by metalorganic chemical vapor deposition. The current-voltage curve of the LEDs showed obvious rectifying characteristics, with a threshold voltage of about 7 V in the sample with 4 nm i-MgO. Under the forward bias of the samples with proper MgO thickness, a sharp UV electroluminescence, located at around 380 nm, was emitted from the active ZnO nanowires, while weak visible emission of around 450-700 nm were observed. The pure UV emission from the ZnO nanowires in the n-ZnOi-MgOp-Si heterostructures was attributed to the electron accumulation in the ZnO by asymmetric band offset and preemptive hole tunneling from Si to ZnO by i-MgO. © 2011 The Electrochemical Society.
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- Publisher
- Electrochemical Society
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