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High efficiency solar cells tailored using biomass-converted graded carbon quantum dots

机译:高效太阳能电池的使用biomass-converted分级碳量子点

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摘要

The solar-to-electric conversion efficiency of mesoscopic solar cells is highly dependent on electron extraction under solar irradiation and determines the charge recombination processes within devices. Boosting charge transfer via building energy level alignment has been proved to be a promising method to enhance the output power of solar cells. In the current work, we present the successful fabrication of functional biomass-converted carbon quantum dots with graded energy levels by doping nitrogen or sulphur atoms from lotus root powder. When employed as light absorbers for mesoscopic solar cells, light harvesting and electron extraction can be markedly increased arising from the band alignment of graded carbon quantum dots, yielding maximal power conversion efficiencies of 0.158% and 0.208% for bi- and tri-cascaded photovoltaics, respectively. The primary results demonstrate that the employment of an energy-graded architecture is a promising strategy to optimize the device output. Following this line of thought, we further fabricate a co-sensitized device by integrating graded carbon quantum dots with N719 dyes to enhance the electron extraction capability. The final device yields an efficiency as high as 9.04%, showing the potential application of carbon quantum dots in high-performance solar cells.
机译:solar-to-electric转换的效率介观太阳能电池高度依赖电子在太阳辐照和提取决定了电荷复合过程在设备。建筑物能源水平对齐已经得到证实是一种很有前途的方法来提高产量太阳能电池的力量。现在的成功制造功能与分级biomass-converted碳量子点能级掺杂氮和硫原子从莲藕粉。吸收器的介观太阳能电池,光收获和电子提取显著增加的乐队对齐的分级碳量子点,屈服最大能量转化效率为0.158%0.208%, bi - tri-cascaded分别光电。证明的就业energy-graded架构是一种很有前途的策略优化设备的输出。这条线的思想,我们进一步制造co-sensitized设备通过集成的碳量子点与N719染料提升电子提取能力。产生一个效率高达9.04%,显示碳量子点的应用前景在高性能太阳能电池。

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