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Binary Ionic Liquid Electrolyte for Dye-Sensitized Solar Cells

机译:用于染料敏化太阳能电池的二元离子液体电解质

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Binary ionic liquid composed of 1-propyl-3-methylimidazolium iodide (PMII) and 1-butyl-3-methylimidazolium thiocyanate (BMISCN) were mixed at four different ratios to study its effect on the dye-sensitized solar cells' (DSSCs) efficiency. The addition of low viscosity ionic liquid which is BMISCN is to overcome the low mass transportation of iodide/triiodide faced by pure PMII. Therefore, the effect of mixing different ratios of these ionic liquids on the viscosity and triiodide diffusion coefficient were studied and the best ratio was identified. Based on the experimental work, the mixture of BMISCN with PMII of higher viscosity has allowed reducing the mass transport limitation of tri-iodide in the electrolyte as the effect of lowering the overall ionic liquid's viscosity. The binary electrolyte PMII: BMISCN (1:0.75) give the highest power conversion efficiency of 1.89 %, with a fill factor of 0.47, open circuit voltage of 0.62, and short circuit current density of 6.52 mA/cm~2 and triiodide diffusion coefficient of 8.47 x 10~(-7) cm~2 s~(-1) . This work has provided valuable insight for further development of binary ionic liquid electrolyte for DSSCs.
机译:(BMISCN)1-丙基-3-甲基碘化咪唑鎓(PMII)构成的二元离子液体和1-丁基-3-甲基咪唑鎓硫氰酸盐在四个不同的比例混合,以研究其对染料敏化太阳能电池(DSSC中)作用效率。添加的低粘度离子液体是BMISCN的是克服纯PMII面对的碘/三碘化物的低质量运输。因此,研究了这些离子液体对粘度和三碘化物扩散系数的不同比例的影响,并鉴定了最佳比率。基于实验工作,BMISCN与较高粘度的PMII的混合物已经允许降低电解质中三碘化物的质量运输限制作为降低整体离子液体粘度的效果。二元电解质PMII:BMISCN(1:0.75)给出最高功率转换效率为1.89%,填充因子为0.47,开路电压为0.62,短路电流密度为6.52 mA / cm〜2和三碘化物扩散系数。 8.47 x 10〜(-7)cm〜2 s〜(-1)。这项工作提供了有价值的洞察力,用于DSSC的二元离子液体电解质进一步发展。

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