首页> 外文期刊>Indian Journal of Physics >Characterization of metal-free D-(π-A)2 organic dye and its application as cosensitizer along with N719 dye for efficient dye-sensitized solar cells
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Characterization of metal-free D-(π-A)2 organic dye and its application as cosensitizer along with N719 dye for efficient dye-sensitized solar cells

机译:无金属D-(π-A)2有机染料的表征及其与N719染料一起作为增敏剂用于高效染料敏化太阳能电池的应用

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The optical, electrochemical and density functional theory molecular simulation of a metal-free D-(π-A)2, i.e., 3,3′-(5,5′-(9-hexyl-9H-carbazole-3,6-diyl)bis(thiophene-5,2-diyl))bis(2-cyanoacrylic acid) denoted as D has been investigated. A stepwise cosensitization of D with N719 dye is adopted to enhance the power conversion efficiency of dye-sensitized solar cells. The metal-free dye possesses strong absorption in the 370–450 nm wavelength range and effectively overcomes the competitive light absorption by I 3 − /I −. The N719/D cosensitized dye-sensitized solar cell shows a power conversion efficiency of about 7.24 %, which is higher than the dye-sensitized solar cells based on either N719 (5.78 %) or D (3.95 %) sensitizers. The improved power conversion efficiency of the cosensitized dye-sensitized solar cell is attributed to the combined enhancement of both short-circuit photocurrent and open-circuit voltage. The short-circuit photocurrent improvement is attributed to the increase in the both light-harvesting efficiency of the cosensitized photoanode and charge collection efficiency of the dye-sensitized solar cell. However, the open-circuit voltage is improved due to better adsorption and surface coverage of TiO2 on cosensitization and an associated reduction in the back electron recombination with increased electron lifetime. These effects are analyzed using electrochemical impedance spectroscopy and dark current–voltage measurements of the dye-sensitized solar cells.
机译:不含金属的D-(π-A)2,即3,3'-(5,5'-(9-己基-9H-咔唑-3,6-)的光学,电化学和密度泛函理论分子模拟已经研究了表示为D的二基)双(噻吩-5,2-二基)双(2-氰基丙烯酸)。 D与N719染料的逐步共敏化可提高染料敏化太阳能电池的功率转换效率。不含金属的染料在370-450 nm波长范围内具有很强的吸收能力,并有效地克服了I 3-/ I-的竞争性光吸收。 N719 / D共敏染料敏化太阳能电池的功率转换效率约为7.24%,高于基于N719(5.78%)或D(3.95%)敏化剂的染料敏化太阳能电池。共敏化染料敏化太阳能电池的功率转换效率提高归因于短路光电流和开路电压的共同增强。短路光电流的改善归因于共敏化光阳极的光收集效率和染料敏化太阳能电池的电荷收集效率的提高。但是,由于共敏化时TiO2的更好的吸附和表面覆盖,以及由于增加的电子寿命而导致的反向电子复合的减少,开路电压得到了改善。使用电化学阻抗谱和染料敏化太阳能电池的暗电流-电压测量分析了这些影响。

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