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首页> 外文期刊>Applied Surface Science >Dye-sensitized solar cell (DSSC) coated with energy down shift layer of nitrogen-doped carbon quantum dots (N-CQDs) for enhanced current density and stability
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Dye-sensitized solar cell (DSSC) coated with energy down shift layer of nitrogen-doped carbon quantum dots (N-CQDs) for enhanced current density and stability

机译:染料敏化太阳能电池(DSSC)涂覆氮掺杂碳量子点(N-CQDS)的能量下换档层,以提高电流密度和稳定性

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摘要

Utilizing ultraviolet light by using Energy Down Shift (EDS) of quantum dots is a recent approach to efficiently utilize a broader spectrum of light, for energy harvesting. Other than higher efficiency, EDS is highly promising for increasing the stability of Dye-Sensitized Solar cells (DSSC); as it decreases the UV degradation of the cell. Previously, heavy metals-based (Cadmium etc) quantum dots are used for the purpose, which are not only toxic but also have less stability and have complicated synthesis methods. To overcome these issues, a thin coating of green emissive Nitrogen-doped Carbon Quantum Dots (N-CQDs) on DSSC, as a stable and efficient EDS layer is proposed here. N-CQDs were synthesized by a scalable, green and facile one-pot hydrothermal pyrolysis of citric acid in presence of nitrogen source, with a production yield of 65%, and quantum yield of 70%. The readily dispersible and highly stable colloid of N-CQDs was coated on the device, and with an optimized thickness, the power conversion efficiency was increased by 10%. This increase was further confirmed by external quantum efficiency (EQE) test, i.e. N-CQDs coated device showed EQE enhancement majorly in the UV spectrum and enhanced stability in UV light was recorded. The transmittance of FTO-glass was increased due to EDS and it also has an antireflection effect, which intern produces a small increase in EQE in the visible spectrum.
机译:利用紫外线通过使用量子点的能量下换档(EDS)是最近有效利用更广泛的光谱的方法,用于能量收集。除了更高的效率之外,EDS对增加染料敏化太阳能电池(DSSC)的稳定性高度有前途。由于它降低了细胞的UV降解。以前,基于重金属的(镉等)量子点用于目的,这不仅有毒,而且具有较少的稳定性并且具有复杂的合成方法。为了克服这些问题,在此提出了一种在DSSC上的绿色发射氮掺杂碳量子点(N-CQDS)的薄涂层,作为稳定和有效的EDS层。在氮源存在下通过碳酸酸的可伸缩,绿色和容易的单罐水热解水合成N-CQD,产率为65%,量子收率为70%。将易于分散的和高稳定的N-CQD胶体涂覆在装置上,并且具有优化的厚度,功率转换效率增加了10%。通过外部量子效率(EQE)试验进一步证实了这种增加,即N-CQDS涂覆的装置在MUV频谱中主要显示出EQE增强,并记录了UV光的增强稳定性。由于EDS,FTO玻璃的透射率增加,并且它也具有抗反射效应,实习生在可见光谱中产生了小于EQE的较小。

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