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首页> 外文期刊>Superlattices and microstructures >Impact of thin metal layer on the optical and electrical properties of indium-doped-tin oxide and aluminum-doped-zinc oxide layers
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Impact of thin metal layer on the optical and electrical properties of indium-doped-tin oxide and aluminum-doped-zinc oxide layers

机译:薄金属层对掺铟锡氧化物和掺铝锌氧化物层的光电性能的影响

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The distinguished transparent conductive oxide (TCO) layers like indium-doped-tin oxide (ITO) and aluminum-doped-zinc oxide (AZO) layers were prepared in different combinations with and without thin Ni metal layer. The optical and electrical properties of prepared samples were analyzed and compared with the objective to understand the role and influence of the Ni layer in each TCO combination. The highest transmittance value of 91.49% was exhibited by prepared AZO layers. Even though if the transmittance of Ni inserting TCO layers was marginally reduced than that of the ordinary TCO samples, they exhibited balanced optical properties with enhanced electrical properties. Carrier concentration of indium doped tin-oxide and aluminum doped zinc oxide (ITO/ AZO) bilayer sample is increased more than double the times when the Ni layer was inserted between ITO and AZO. Thin layer of Ni in between TCO layers reduced sheet resistance and offered substantial transmittance, so that the figure of merit (FOM) value of Ni embedding TCOs was greater than that of TCOs without Ni layer. The ITO/Ni/AZO combination provided optimum results in all the electrical properties. As compared to other TCO/metal combinations, the overall performance of ITO/Ni/AZO tri-layer combination was appreciable. These results show that the optical and electrical properties of TCO layers could be enhanced by inserting a Ni layer with optimum thickness in between them.
机译:制备具有和不具有薄的镍金属层的不同组合的杰出的透明导电氧化物(TCO)层,例如掺铟锡氧化物(ITO)和掺铝锌氧化物(AZO)层。分析了所制备样品的光学和电学性质,并与目标进行了比较,以了解镍层在每种TCO组合中的作用和影响。制备的AZO层显示出最高的透射率值91.49%。即使插入Ni的TCO层的透射率比普通TCO样品的透射率略有降低,它们仍显示出平衡的光学性能和增强的电性能。当在ITO和AZO之间插入Ni层时,铟掺杂的氧化锡和铝掺杂的氧化锌(ITO / AZO)双层样品的载流子浓度增加了两倍以上。 TCO层之间的Ni薄层降低了薄层电阻并提供了相当大的透射率,因此,嵌入Ni的TCO的品质因数(FOM)值比没有Ni层的TCO的要高。 ITO / Ni / AZO组合在所有电性能方面均提供了最佳结果。与其他TCO /金属组合相比,ITO / Ni / AZO三层组合的整体性能可观。这些结果表明,通过在它们之间插入具有最佳厚度的Ni层,可以提高TCO层的光学和电学性能。

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