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A simple strategy for synthesizing highly luminescent carbon nanodots and application as effective down-shifting layers

机译:一种合成高发光碳纳米点的简单策略,并将其用作有效的下移层

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摘要

We propose a novel strategy to prepare highly luminescent carbon nanodots (C-dots) by employing a hydrothermal method with citric acid as the carbon source and ethylenediamine as the nitrogen source, together with adding moderate ammonia water (AW) to achieve both appropriate inner structure and excellent N passivation. The effect of pH value and AW amount on the luminescence properties has been thoroughly investigated. The photoluminescence quantum yield of the resultant C-dots reaches as high as 84.8%, which is of 10.56% higher than that of the C-dots synthesized in the absence of AW in the reaction precursors. We have further combined the highest luminescent C-dots with polyvinyl alcohol to form luminescent down-shifting layers on silicon nanowire solar cells. An effective enhancement of short-circuit current density has been realized and the contribution of the down-shifting has been extracted quantitatively from the deterioration of surface reflectance and the gain of the optical absorption redistribution by means of a theoretical model on external quantum efficiency analysis.
机译:我们提出了一种新的策略,通过采用柠檬酸为碳源,乙二胺为氮源的水热法,并添加适量的氨水(AW)来实现适当的内部结构,从而制备高发光的碳纳米点(C-dots)和出色的N钝化。已深入研究了pH值和AW量对发光性能的影响。所得C点的光致发光量子产率高达84.8%,比反应前体中不存在AW的情况下合成的C点的光致发光量子产率高10.56%。我们进一步将最高发光的C点与聚乙烯醇结合在一起,以在硅纳米线太阳能电池上形成发光下移层。通过外部量子效率分析的理论模型,已经实现了短路电流密度的有效增强,并且从表面反射率的下降和光吸收重新分布的增益中定量地提取了降档的贡献。

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