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Highly transparent low sheet resistance electrodes for solar cell applications

机译:用于太阳能电池的高透明低薄层电阻电极

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摘要

High aspect ratio copper nanowires were synthesized, using a solution-based approach. The nanowires along with reduced graphene oxide thin films were sprayed onto glass and flexible substrates and later annealed in order to produce transparent conducting electrodes (TCEs). These electrodes exhibited 91.5% optical transmissivity and around 9- Ω/sq sheet resistance, which are comparable to Indium Tin Oxide (ITO). In addition, the hybrid TCEs, when exposed to ambient temperature showed slowed sheet resistance degradation. The electrodes deposited on a flexible substrate, showed immunity against any notable changes in the sheet resistance, when gone through numerous bending cycles. Adaption of such nanomaterials in conducting films could lead to the potential alternatives for the conventional ITO, with applications in numerous industries, including solar cells manufacturing.
机译:使用基于解决方案的方法合成了高纵横比的铜纳米线。将纳米线和还原的氧化石墨烯薄膜一起喷涂到玻璃和柔性基板上,然后退火以产生透明导电电极(TCE)。这些电极表现出91.5%的光学透射率和大约9Ω/ sq的薄层电阻,与氧化铟锡(ITO)相当。此外,混合TCE在暴露于环境温度时显示出较慢的薄层电阻退化。当经过许多弯曲循环时,沉积在柔性基板上的电极表现出对薄层电阻任何明显变化的抵抗力。这种纳米材料在导电膜中的适应性可能导致传统ITO的潜在替代品,并在包括太阳能电池制造在内的许多行业中得到应用。

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