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Demonstration of Hydrogen Effects on ZnO LEDs in Current-Voltage and Electroluminescence Characteristics

机译:ZnO LED在电流电压和电致发光特性中的氢气效应的示范

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Hydrogen effects on the electrical and optical properties of p-i-n ZnO light emitting diodes (LEDs) were investigated. There were no diode characteristics or light emission observed unless the structures were annealed at 350 °C after fabrication. Annealed diodes showed band-edge electroluminescence (385nm) and a broad defect band with a peak at 930nm at room temperature. A hydrogen plasma was used to deliberately introduce hydrogen into the annealed p-i-n ZnO LEDs to verify its effects on diode characteristics. With hydrogen plasma treatment, the diode reverse-bias leakage current increased and both the turn-on voltage and the intensity of the electroluminescence decreased. Moreover, the effects of moisture, water, and phosphoric acid solution on the annealed diode characteristics were also investigated and significant degradation of electrical and optical properties were observed in all cases. These results point to the sensitivity of ZnO LEDs to processing conditions and measurement ambient.
机译:研究了对P-I-N ZnO发光二极管(LED)的电气和光学性质的氢气效应。除非在制造后在350℃下在350℃下退火,否则没有观察到二极管特性或发光。退火二极管显示带边缘电致发光(385nm)和宽缺陷带,室温下930nm处的峰值。使用氢等离子体将氢气刻上引入退火的P-I-N ZnO LED,以验证其对二极管特性的影响。利用氢等离子体处理,二极管反向偏置漏电流增加,导通电压和电致发光的强度降低。此外,还研究了水分,水和磷酸溶液对退火二极管特性的影响,并在所有情况下观察到电气和光学性质的显着降解。这些结果指向ZnO LED对处理条件和测量环境的敏感性。

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