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Increased upconversion performance for thin film solar cells: a trimolecular composition

机译:薄膜太阳能电池的上转换性能提高:三分子成分

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摘要

Photochemical upconversion based on triplet–triplet annihilation (TTA-UC) is employed to enhance the short-circuit currents generated by two varieties of thin-film solar cells, a hydrogenated amorphous silicon (a-Si:H) solar cell and a dye-sensitized solar cell (DSC). TTA-UC is exploited to harvest transmitted sub-bandgap photons, combine their energies and re-radiate upconverted photons back towards the solar cells. In the present study we employ a dual-emitter TTA-UC system which allows for significantly improved UC quantum yields as compared to the previously used single-emitter TTA systems. In doing so we achieve record photo-current enhancement values for both the a-Si:H device and the DSC, surpassing 10–3 mA cm–2 sun–2 for the first time for a TTA-UC system and marking a record for upconversion-enhanced solar cells in general. We discuss pertinent challenges of the TTA-UC technology which need to be addressed in order to achieve its viable device application.
机译:基于三重态-三重态an灭(TTA-UC)的光化学上转换用于增强由两种类型的薄膜太阳能电池,氢化非晶硅(a-Si:H)太阳能电池和染料-太阳能电池产生的短路电流。敏化太阳能电池(DSC)。 TTA-UC被用来收集透射的子带隙光子,结合它们的能量,并将上转换后的光子重新辐射回太阳能电池。在本研究中,我们采用双发射器TTA-UC系统,与以前使用的单发射器TTA系统相比,它可以显着提高UC量子产率。这样一来,我们实现了a-Si:H器件和DSC的创纪录的光电流增强值,超过10 –3 mA cm –2 sun –2 首次用于TTA-UC系统,并通常记录了上转换增强型太阳能电池的记录。我们讨论了TTA-UC技术的相关挑战,为了实现其可行的设备应用,需要解决这些挑战。

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