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Copper-based Dye-sensitized Solar Cells with Quasi-Solid Nano Cellulose Composite Electrolytes

机译:铜基染料敏化太阳能电池与准固体纳米纤维素复合电解质

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摘要

The study presented describes the preparation of solvent-free nano composite gel electrolytes in combination with  copper(I)-based dye-sensitized solar cells (DSSCs). The electrolytes comprise poly(ethylene oxide) (PEO) and cellulose nano crystals (CNCs) and an I 3 – /I – redox shuttle. The quasi-solid-state DSSCs show increased photoconversion performance with increased amount of CNC in the electrolyte. DSSC performances measured on the day that the devices are fabricated show that when the electrolyte is composed of 80% CNC, a cell efficiency of 1.09% is reached compared to 1.16% using a standard liquid I 3 – /I – electrolyte. DSSCs containing the nano composites and the copper(I)-based dye show robust stability over time, and after 60 days, DSSCs with the PEO/CNC/I 3 – /I – electrolyte outperform those containing the liquid electrolyte
机译:提出的研究描述了与基于铜(I)的染料敏化太阳能电池(DSSC)结合使用的无溶剂纳米复合凝胶电解质的制备方法。电解质包括聚环氧乙烷(PEO)和纤维素纳米晶体(CNC)和I 3-/ I-氧化还原梭。准固态DSSC随着电解质中CNC含量的增加显示出更高的光转换性能。在设备制造当天测量的DSSC性能表明,当电解质由80%的CNC组成时,电池效率达到1.09%,而使用标准液态I 3-/ I-电解质则达到1.16%。含有纳米复合材料和基于铜(I)的染料的DSSC随时间推移显示出稳定的稳定性,并且60天后,具有PEO / CNC / I 3-/ I-电解质的DSSC优于含有液体电解质的DSSC。

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