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Demonstration of Solar Cell on a Graphite Sheet with Carbon Diffusion Barrier Evaluation

机译:碳扩散壁垒评估在石墨板上的太阳能电池演示

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摘要

An amorphous Si (a-Si) solar cell with a back reflector composed of zinc oxide (ZnO) and silver (Ag) is potentially the most plausible and flexible solar cell if a graphite sheet is used as the substrate. Graphite supplies lightness, conductivity and flexibility to devices. When a graphite sheet is used as the substrate, carbon can diffuse into the Ag layer in the subsequent p-i-n process at 200–400 °C. To prevent this, we added an oxide layer as a carbon diffusion barrier between the carbon substrate and the back reflector. For the carbon diffusion barrier, silicon oxide (SiO ) or tin oxide (SnO ) was used. We evaluated the thermal stability of the back reflector of a carbon substrate using secondary-ion mass spectrometry (SIMS) to analyze the carbon diffusion barrier material. We confirmed the deposition characteristics, reflectance and prevention of carbon diffusion with and without the barrier. Finally, the structures were incorporated into the solar cell and their performances compared. The results showed that the back reflectors that were connected to a carbon diffusion barrier presented better performance, and the reflector with an SnO layer presented the best performance.
机译:如果使用石墨片作为衬底,则具有由氧化锌(ZnO)和银(Ag)组成的背反射器的非晶Si(a-Si)太阳能电池可能是最合理和最灵活的太阳能电池。石墨为设备提供了亮度,导电性和柔韧性。当使用石墨片作为基材时,碳可以在随后的200-400°C的p-i-n工艺中扩散到Ag层中。为了防止这种情况,我们在碳基板和背面反射器之间添加了一层氧化层作为碳扩散阻挡层。对于碳扩散阻挡层,使用氧化硅(SiO)或氧化锡(SnO)。我们使用二次离子质谱(SIMS)评估了碳扩散阻挡层材料,从而评估了碳基板背面反射器的热稳定性。我们确认了在有和没有障碍的情况下的沉积特性,反射率和防止碳扩散。最后,将结构结合到太阳能电池中并比较其性能。结果表明,与碳扩散阻挡层相连的后反射器表现出更好的性能,而具有SnO层的反射器表现出最好的性能。

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