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首页> 外文期刊>Nanomaterials >Improving the Power Conversion Efficiency of Carbon Quantum Dot-Sensitized Solar Cells by Growing the Dots on a TiO 2 Photoanode In Situ
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Improving the Power Conversion Efficiency of Carbon Quantum Dot-Sensitized Solar Cells by Growing the Dots on a TiO 2 Photoanode In Situ

机译:通过原位生长TiO 2光阳极上的点来提高碳量子点敏化太阳能电池的功率转换效率

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Dye-sensitized solar cells (DSSCs) are highly promising since they can potentially solve global energy issues. The development of new photosensitizers is the key to fully realizing perspectives proposed to DSSCs. Being cheap and nontoxic, carbon quantum dots (CQDs) have emerged as attractive candidates for this purpose. However, current methodologies to build up CQD-sensitized solar cells (CQDSCs) result in an imperfect apparatus with extremely low power conversion efficiencies (PCEs). Herein, we present a simple strategy of growing carbon quantum dots (CQDs) onto TiO 2 surfaces in situ. The CQDs/TiO 2 hybridized photoanode was then used to construct solar cell with an improved PCE of 0.87%, which is higher than all of the reported CQDSCs adopting the simple post-adsorption method. This result indicates that an in situ growing strategy has great advantages in terms of optimizing the performance of CQDSCs. In addition, we have also found that the mechanisms dominating the performance of CQDSCs are different from those behind the solar cells using inorganic semiconductor quantum dots (ISQDs) as the photosensitizers, which re-confirms the conclusion that the characteristics of CQDs differ from those of ISQDs.
机译:染料敏化太阳能电池(DSSC)前景广阔,因为它们可以潜在地解决全球能源问题。新型光敏剂的开发是完全实现DSSC提出的观点的关键。廉价且无毒的碳量子点(CQD)已成为实现此目的的诱人候选物。但是,目前用于建立CQD敏感型太阳能电池(CQDSC)的方法会导致设备不完善,且功率转换效率(PCE)极低。在这里,我们提出了一种将碳量子点(CQDs)原位生长到TiO 2表面上的简单策略。然后将CQDs / TiO 2杂化的光阳极用于构建太阳能电池,其PCE改善为0.87%,高于采用简单后吸附法的所有报道的CQDSC。该结果表明,就优化CQDSC的性能而言,原位生长策略具有很大的优势。此外,我们还发现,控制CQDSC性能的机理与使用无机半导体量子点(ISQD)作为光敏剂的太阳能电池背后的机理不同,这再次证实了CQDs特性与CQDs特性不同的结论。 ISQD。

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