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首页> 外文期刊>Advanced energy materials >Multifunctional Effect of p-Doping, Antireflection, and Encapsulation by Polymeric Acid for High Efficiency and Stable Carbon Nanotube-Based Silicon Solar Cells
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Multifunctional Effect of p-Doping, Antireflection, and Encapsulation by Polymeric Acid for High Efficiency and Stable Carbon Nanotube-Based Silicon Solar Cells

机译:p掺杂,抗反射和聚合物封装对高效稳定碳纳米管基硅太阳能电池的多功能作用

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摘要

Silicon solar cells among different types of solar energy harvesters have entered the commercial market owing to their high power conversion efficiency and stability. By replacing the electrode and the p-type layer by a single layer of carbon nanotubes, the device can be further simplified. This greatly augments the attractiveness of silicon solar cells in the light of raw material shortages and the solar payback period, as well as lowering the fabrication costs. However, carbon nanotube-based silicon solar cells still lack device efficiency and stability. These can be improved by chemical doping, antireflection coating, and encapsulation. In this work, the multifunctional effects of p-doping, antireflection, and encapsulation are observed simultaneously, by applying a polymeric acid. This method increases the power conversion efficiency of single-walled carbon nanotube-based silicon solar cells from 9.5% to 14.4% and leads to unprecedented device stability of more than 120 d under severe conditions. In addition, the polymeric acid-applied carbon nanotube-based silicon solar cells show excellent chemical and mechanical robustness. The obtained stable efficiency stands the highest among the reported carbon nanotube-based silicon solar cells.
机译:由于其高功率转换效率和稳定性,不同类型的太阳能收集器中的硅太阳能电池已经进入商业市场。通过用单层碳纳米管代替电极和p型层,可以进一步简化器件。鉴于原材料短缺和太阳能回收期,这大大提高了硅太阳能电池的吸引力,并降低了制造成本。然而,基于碳纳米管的硅太阳能电池仍然缺乏器件效率和稳定性。这些可以通过化学掺杂,减反射涂层和封装来改善。在这项工作中,通过施加聚合酸,可以同时观察到p掺杂,抗反射和封装的多功能作用。此方法可将单壁碳纳米管基硅太阳能电池的功率转换效率从9.5%提高到14.4%,并在严酷条件下实现超过120 d的前所未有的器件稳定性。另外,施加了聚合酸的基于碳纳米管的硅太阳能电池表现出优异的化学和机械强度。在报道的基于碳纳米管的硅太阳能电池中,获得的稳定效率最高。

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