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首页> 外文期刊>International Journal of Photoenergy >TiO2/Chitosan-NH4I(+I2)-BMII-BasedDye-Sensitized Solar Cells with Anthocyanin Dyes Extracted from Black Rice and Red Cabbage
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TiO2/Chitosan-NH4I(+I2)-BMII-BasedDye-Sensitized Solar Cells with Anthocyanin Dyes Extracted from Black Rice and Red Cabbage

机译:TiO2 /壳聚糖-NH4I(+ I2)-BMII-染料敏化的黑米和红甘蓝中花色苷染料的太阳能电池

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摘要

Dye sensitized solar cells (DSSCs) were fabricated using anthocyanin dye and polymer electrolyte with ammonium iodide (NH4I) salt. The study was designed to focus on increasing the efficiency of the DSSC. DSSC using 26.9 wt. % chitosan-22 wt. % NH4I(+2.2 wt.% I2)-48.9 wt. % IL solid electrolyte, black rice anthocyanin with Pt counter electrode showedJscof 172 μA cm−2andVocof 195 mV. The performance of the cell with Pt electrode was further improved by coating a blocking layer on the indium tin oxide (ITO) substrate. The black rice DSSC using 11 wt. % (chitosan:PEO, wt. ratio 30:70)-9 wt. % NH4I-80 wt. % BMII gel electrolyte exhibitedJscof 1213 μA cm−2,Vocof 400 mV,FFof 0.47, andηof 0.23%. The red cabbage anthocyanin DSSC containing (phthaloyl chitosan-PEO)-NH4I-BMII gel electrolyte using tartaric acid to adjust the pH of anthocyanin solution showed the best performance with the fill factor of 0.39,Jscof 3503 μA cm−2,Vocof 340 mV, and an overall conversion efficiency of 0.46%.
机译:使用花色苷染料和含碘化铵(NH4I)盐的聚合物电解质制造了染料敏化太阳能电池(DSSC)。该研究旨在专注于提高DSSC的效率。 DSSC使用26.9重量%。 %壳聚糖-22 wt。 NH 4 I(+2.2重量%I 2)-48.9%重量。 %IL固体电解质,带有Pt对电极的黑米花色苷显示Jscof172μAcm-2和Vocof195μmV。通过在铟锡氧化物(ITO)基板上涂覆阻挡层,可以进一步提高带有Pt电极的电池的性能。黑米DSSC使用11 wt。 %(壳聚糖:PEO,重量比30:70)-9 wt。 NH4I-80 wt%。 %BMII凝胶电解质表现出Jscof1213μAcm-2,Voc为400μmV,FF为0.47,η为0.23%。用酒石酸调节花青素溶液的pH值的包含(邻苯二甲酰壳聚糖-PEO)-NH4I-BMII凝胶电解质的红甘蓝花青素DSSC表现出最好的性能,填充系数为0.39,Jscof 3503μAcm-2,Vocof 340 mV,整体转换效率为0.46%。

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