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首页> 外文期刊>Journal of power sources >Perfluoro anion based binary and ternary ionic liquids as electrolytes for dye-sensitized solar cells
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Perfluoro anion based binary and ternary ionic liquids as electrolytes for dye-sensitized solar cells

机译:全氟阴离子基二元和三元离子液体,作为染料敏化太阳能电池的电解质

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摘要

In this work, eight new ionic liquids (ILs) based on triethylammonium (TEA) or n-methylpiperidinium (NMP) cations and perfluoro carboxylate (PFC) anions having different carbon chain lengths are synthesized and their physico-chemical properties such as density, decomposition temperature, viscosity and conductivity are determined. Photovoltaic characteristics of dye-sensitized solar cells (DSSCs) with binary ionic liquids electrolytes, containing the mixture of the synthesized ILs and 1-methyl-3-propyl imidazolium iodide (PMII) (v/v = 35/65), are evaluated. Among the different ILs, solar cells containing NMP based ILs show higher V-OC than that of TEA, whereas, higher J(SC) is noted for the DSSCs incorporated with the latter when compared to the former. Further, the photo-current of the DSSCs decreases with the increase of the carbon chain length of perfluoro carboxylate anionic group of ILs. The cell performance of the DSSC containing ternary ionic liquids-based electrolytes compose of NMP-2C/TEA-2C/PMII (v/v/v = 28/7/65) exhibits a J(SC) of 12.99 mA cm(-2), a V-OC of 639.0 mV, a FF of 0.72, and a cell efficiency of 6.01%. The extraordinary durability of the DSSC containing the above combination of electrolytes stored in dark at 50 degrees C is proved to be unfailing up to 1200 h. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项工作中,合成了八种基于三乙基铵(TEA)或正甲基哌啶(NMP)阳离子和具有不同碳链长度的全氟羧酸根(PFC)阴离子的新型离子液体(IL),它们的物理化学性质(例如密度,分解度)确定温度,粘度和电导率。对含有二元离子液体电解质的染料敏化太阳能电池(DSSC)的光伏特性进行了评估,该电解质包含合成的IL和1-甲基-3-丙基碘咪唑鎓碘化物(PMII)(v / v = 35/65)的混合物。在不同的IL中,包含基于NMP的IL的太阳能电池的V-OC值高于TEA,而与后者结合的DSSC的J(SC)更高。此外,DSSC的光电流随着IL的全氟羧酸根阴离子基团的碳链长度的增加而降低。包含NMP-2C / TEA-2C / PMII(v / v / v = 28/7/65)的三元离子液体基电解质组成的DSSC的电池性能表现出12.99 mA cm(-2)的J(SC) ),V-OC为639.0 mV,FF为0.72,电池效率为6.01%。包含以上在50摄氏度的黑暗环境中存储的电解质组合的DSSC的超常耐久性被证明在1200 h内不会失效。 (C)2016 Elsevier B.V.保留所有权利。

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