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Optimization of the performance of transparent enclosures with deposited gold nanolayers using an analytical model

机译:利用分析模型优化沉积金纳米层的透明外壳性能

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摘要

Transparent enclosures formed of nanolayer composite panels have been proposed to provide high transmittance in the visible range as well as good shielding effectiveness in applications with challenging requirements in terms of low weight, small size, and transparency. We present herein a practical method to optimize the performance of such enclosures, then based on the Robinson et al. model, an analytical model is introduced to approximately calculate their shielding effectiveness. The results of the proposed model show acceptable agreement with CST simulation and measurement results, while the Robinson et al. cannot be used to analyze composite enclosures due to its inability to take into account the effects of multilayer panels. In the next step, gold nanolayers with various thicknesses were deposited on patterned indium tin oxide (ITO) glass panels using the thermal evaporation technique. Then, considering the tradeoff between the shielding effectiveness and optical transparency, an optimum thickness for the gold nanolayer was selected. To assess the results of the performance optimization, the results for the copper, ITO glass, and gold-deposited enclosures were compared, revealing that the 10-nm gold-deposited ITO glass enclosure provided good shielding effectiveness, similar to that of the copper structure (and about 20 dB better than that of the ITO glass enclosure) as well as acceptable optical transparency, whereas metallic enclosures cannot provide transparency.
机译:已经提出了由纳米组复合板形成的透明外壳,以在可见范围内提供高透射率以及在低重量,体积小,透明度方面具有具有挑战性的要求的应用中的良好屏蔽效果。我们在此提出了优化这种外壳的性能的实用方法,然后基于Robinson等人。模型,引入分析模型以大致计算其屏蔽效果。拟议模型的结果显示了与CST模拟和测量结果的可接受的一致,而罗宾逊等人则。由于无法考虑多层面板的影响,不能用于分析复合围栏。在下一步中,使用热蒸发技术沉积具有各种厚度的金纳米,具有各种厚度的氧化铟锡(ITO)玻璃板。然后,考虑到屏蔽效果和光学透明度之间的折衷,选择了金纳米层的最佳厚度。为了评估性能优化的结果,比较了铜,ITO玻璃和金沉积的外壳的结果,揭示了10-NM金沉积的ITO玻璃外壳提供了良好的屏蔽效果,类似于铜结构的屏蔽效果(约为20dB的比IIO玻璃外壳更好)以及可接受的光学透明度,而金属外壳不能提供透明度。

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