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Enhancement of silicon solar cells by downshifting with Eu and Tb coordination complexes

机译:通过与Eu和Tb配合物降级来增强硅太阳能电池

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Luminescent lanthanide-doped oxides, nanoparticles, nanocrystals, and coordination complexes are major tools in the fields of optical and laser materials, telecommunications, medical imaging, and fluoroimmunoassays. In particular, coordination complexes are efficient energy converters with high photostability, large ligand-induced Stokes shifts, and tunable excitation and emission spectra. However, their application as light downshifting materials for solar cells has not yet been widely explored. This third generation solar cell concept enables to increase the efficiency of standard solar cellssuch as Si or copper indium gallium (di)selenide (CIGS)that have low performance for ultraviolet photons. The incorporation of such a converter in solar module encapsulants can provide a cheap and effective way to integrate photon conversion. Here, encapsulants functionalised by photon downshifting coordination complexes have been spin-coated on silicon solar cells. For all the coordination complexes, an increase of the spectral response of the solar cells is observed in the ultraviolet region. In the best case, a relative increase of 8% of the conversion efficiency of the solar cell is observed. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:掺杂镧系元素的氧化物,纳米颗粒,纳米晶体和配位化合物是光学和激光材料,电信,医学成像和荧光免疫分析领域的主要工具。特别是,配位化合物是高效的能量转换器,具有高光稳定性,大的配体诱导的斯托克斯位移以及可调的激发和发射光谱。然而,它们作为太阳能电池的轻质降档材料的应用尚未得到广泛探索。第三代太阳能电池概念能够提高对紫外线光子性能低的标准太阳能电池(例如硅或硒化铜铟镓(CI))的效率。将这种转换器并入太阳能电池组件密封剂中可以提供一种廉价且有效的方式来集成光子转换。在这里,通过光子降档配位络合物功能化的密封剂已经旋涂在硅太阳能电池上。对于所有配位化合物,在紫外区域观察到太阳能电池光谱响应的增加。在最佳情况下,观察到太阳能电池转换效率的相对提高了8%。版权所有(c)2016 John Wiley&Sons,Ltd.

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