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Fabrication and Analysis of Chemically-Derived Graphene/Pyramidal Si Heterojunction Solar Cells

机译:化学衍生石墨烯/金字塔形硅异质结太阳能电池的制备和分析

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摘要

In the study, the chemically-derived reduced graphene oxide flakes on the pyramidal Si substrate to construct the heterojunction solar cells via simple spin-coating process have been presented. The total reflectance of chemically-derived graphene on pyramidal Si is ~12% at the wavelength of 550 nm which is remarkably reduced compared with that of reduced graphene oxide on planar Si. By modifying the density and distribution of reduced graphene oxide flakes on Si, the power conversion efficiency of 5.20% is achieved. Additionally, the simulated absorbance of different-thick graphene is implemented to optimize the performance of graphene/pyramidal Si devices. The fabrication technique for rGO-based devices has the merits of simplicity, large scale, high throughput and low cost, which is a new starting point in the direction of graphene-based material for the applications of next generation optoelectronics.
机译:在研究中,已经提出了通过简单的旋涂工艺在锥体硅衬底上化学衍生的还原氧化石墨烯薄片以构建异质结太阳能电池。化学衍生的石墨烯在550 nm波长下在锥体Si上的总反射率为〜12%,与平面Si上还原的氧化石墨烯相比,显着降低。通过修改Si上还原的氧化石墨烯薄片的密度和分布,可以实现5.20%的功率转换效率。此外,实现了不同厚度石墨烯的模拟吸收率,以优化石墨烯/金字塔形硅器件的性能。基于rGO的器件的制造技术具有简单,大规模,高通量和低成本的优点,这是石墨烯基材料在下一代光电应用中的新起点。

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