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Combined effect of double antireflection coating and reversible molecular doping on performance of few-layer graphene/n-silicon Schottky barrier solar cells

机译:双抗反射涂层的综合作用及可逆分子掺杂对几层石墨烯/ N-Silicon肖特基屏障太阳能电池性能的影响

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摘要

Few-layer graphene films were grown by chemical vapor deposition and transferred onto n-type crystalline silicon wafers to fabricate graphene/n-silicon Schottky barrier solar cells. In order to increase the power conversion efficiency of such cells the graphene films were doped with nitric acid vapor and an antireflection treatment was implemented to reduce the sunlight reflection on the top of the device. The doping process increased the work function of the graphene film and had a beneficial effect on its conductivity. The deposition of a double antireflection coating led to an external quantum efficiency up to 90% across the visible and near infrared region, the highest ever reported for this type of devices. The combined effect of graphene doping and antireflection treatment allowed to reach a power conversion efficiency of 8.5% exceeding the pristine (undoped and uncoated) device performance by a factor of 4. The optical properties of the antireflection coating were found to be not affected by the exposure to nitric acid vapor and to remain stable over time.
机译:通过化学气相沉积生长几层石墨烯薄膜并转移到N型晶体硅晶片上以制造石墨烯/ N-硅肖特基势垒太阳能电池。为了提高这种细胞的功率转换效率,将石墨烯膜掺杂有硝酸蒸气,并实施抗反射处理以减少装置顶部的阳光反射。掺杂过程增加了石墨烯薄膜的功函数,对其电导率有益效果。双抗反射涂层的沉积在可见的和近红外区域上导致了高达90%的外部量子效率,这是针对这种类型的设备报告的最高。石墨烯掺杂和抗反射处理的综合作用达到8.5%的功率转换效率超过原始(未掺杂和未涂覆)器件性能的4.倍率4.发现抗反射涂层的光学性质不受影响暴露于硝酸蒸气并随着时间的推移保持稳定。

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