首页> 外文期刊>Dyes and Pigments >Photoelectrochemical and spectrophotometric studies on dye-sensitized solar cells (DSCs) and stable modules (DSCMs) based on natural apocarotenoids pigments
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Photoelectrochemical and spectrophotometric studies on dye-sensitized solar cells (DSCs) and stable modules (DSCMs) based on natural apocarotenoids pigments

机译:基于天然偶发素颜料的染料敏化太阳能电池(DSCs)和稳定模块(DSCMS)的光电化学和分光光度研究

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摘要

We present a study on dye-sensitized solar cells (DSCs) and we fabricate dye-sensitized solar modules (DSCMs) based on natural apocarotenoids extracted from the achiote's seeds (annatto). Use of less polar solvent such as diethyl ether improves the bixin concentration in the annatto extract which, was employed as sensitizer in the devices. We measure IPCE max (similar to 33%) and estimate phi(inj) = 0.438 for annatto. By accurate and progressive optimization of both TiO2 multilayer photoanode and of electrolyte composition an efficiency (eta) around 1.6%, is achieved, with an improvement of about similar to 742% compare to the best performance for annatto extract, so far reported. DSCM shows stability which overcomes 1000 h (shelf-life test), under 1 sun, and produces a battery capacity of similar to 46.8 Ah, the equivalent to similar to 15 type AAA standard battery, in a similar time period. Although annatto based DSCMs are still below the efficiency requirements for practical applications for large scale industry, our encouraging results, testify the potentiality of this pigment in the production of non-toxic, cheap, long term stable and environmentally friendly vegetable based solar devices, as alternatives to batteries for small electronic goods market.
机译:我们展示了染料敏化太阳能电池(DSCs)的研究,我们基于从Achiote的种子(Annatto)中提取的天然浮躁蛋白来制造染料敏化的太阳能模块(DSCMS)。使用较少的极性溶剂,例如乙醚,改善了Annatto提取物中的苄酰蛋白浓度,其在装置中用作敏化剂。我们测量IPCE Max(类似于33%)并估计Phi(Inj)& annatto = 0.438。目的,通过精确且逐渐进行TiO2多层光电阳极和电解质组成的优化,迄今为止,迄今为止,达到约1.6%的效率(ETA)约为1.6%。迄今为止,与Annatto提取物的最佳性能相比,约742%。 DSCM显示稳定性,稳定克服1000小时(货物 - 寿命测试),在1℃下,并产生类似于46.8 AH的电池容量,相当于相似于类似的AAA标准电池,在类似的时间段内。虽然基于Annatto的DSCMS仍低于实际应用对大型行业的实际应用的效率要求,但我们的令人鼓舞的结果,证明了这种颜料的潜力在生产无毒,便宜,长期稳定和环保的蔬菜基础的太阳能器件中,如小型电子产品市场电池的替代品。

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