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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Quasi-Solid-State Dye-Sensitized Solar Cells for Efficient and Stable Power Generation under Room Light Conditions
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Quasi-Solid-State Dye-Sensitized Solar Cells for Efficient and Stable Power Generation under Room Light Conditions

机译:用于室内光线条件下的准固态染料敏化太阳能电池用于高效稳定的发电

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Highly efficient quasi-solid-state dye-sensitized solar cells (QS-DSSCs) are fabricated using nanocomposite gel electrolytes and applied under room light conditions (200 lx). To obtain high energy conversion efficiency in QS-DSSCs, the important components of the DSSC are systematically optimized based on their performance in liquid-state DSSCs. It shows that the liquid cell using the 3-methoxypropionitrile-based cobalt electrolyte has higher efficiency (18.91%) than the cell using the acetonitrile-based electrolyte (17.82%) under 200 lx illumination due to the higher charge recombination resistance at the photoelectrode/electrolyte interface for the 3-methoxypropionitrile system. Poly(vinylidene fluoride-co-hexafluoropropylene) is utilized as the gelator of the liquid electrolytes to prepare polymer gel electrolytes. Furthermore, to improve the performance of the QS-DSSCs, different metal oxide nanoparticles are introduced as nanofillers of the polymer gel electrolytes. It shows that the zinc oxide nanofillers have a superior performance in increasing the cell efficiency and the energy conversion efficiencies of the QS-DSSCs are higher than those of the corresponding liquid cells. By regulating the concentration of the zinc oxide nanofillers, the efficiency of the 3-methoxypropionitrile based QS-DSSC can achieve a value of 20.11% under 200 lx illumination. This QS-DSSC has a long-term stability at 35 degrees C.
机译:使用纳米复合凝胶电解质制造高效的准固态染料敏化太阳能电池(QS-DSSCs),并在室内光条件下施加(200Lx)。为了获得QS-DSSCS的高能量转换效率,基于它们在液态DSSCS中的性能来系统地优化DSSC的重要组成部分。结果表明,由于光电极的较高电荷复合电阻,使用乙腈基电解质(17.82%),液体电池具有比使用乙腈基电解质(17.82%)更高的效率(18.91%)。用于3-甲氧基丙腈系统的电解质界面。聚(偏二氟乙烯 - 共六氟丙烯)用作液体电解质的凝胶剂以制备聚合物凝胶电解质。此外,为了改善QS-DSSCs的性能,将不同的金属氧化物纳米颗粒作为聚合物凝胶电解质的纳米填充物引入。它表明,氧化锌纳米填料在增加细胞效率时具有优异的性能,并且QS-DSSCs的能量转换效率高于相应的液体细胞的能量转换效率。通过调节氧化锌纳米氧化锌的浓度,3-甲氧基丙腈基的QS-DSSC的效率可以在200Lx照明下达到20.11%的值。该QS-DSSC在35摄氏度下具有长期稳定性。

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