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Highly robust tetrazolate based complexes for efficient and long-term stable dye sensitized solar cells

机译:高度坚固的基于四唑酸盐的配合物,可用于高效且长期稳定的染料敏化太阳能电池

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We report a new family of ruthenium poly-pyridyl complexes that bear tetrazolate based ligands (either bi-chelate as in T162 or tri-chelate as in T120 and T147), along with their spectroscopic, electrochemical, and theoretical characterization. Dye-sensitized solar cells (DSSCs) with these complexes show good conversion efficiencies that are highly dependent on the respective electrolyte composition especially in the case of T120 and T147, due to their low lying LUMOs when compared to N719 and T162. DSSCs based on these dyes showed superb stability under light soaking at 70 degrees C for 2000 h. The T120 and T147 based cells retained their initial efficiencies after the long term-stability test, while the T162 and N719 efficiencies decreased by 18% and 40%, respectively.
机译:我们报告了一个新的钌多吡啶配合物家族,它们带有基于四唑酸盐的配体(如T162中的双螯合物或T120和T147中的三螯合物),以及它们的光谱,电化学和理论表征。具有这些配合物的染料敏化太阳能电池(DSSC)显示出良好的转换效率,该转换效率高度依赖于相应的电解质成分,尤其是在T120和T147的情况下,因为与N719和T162相比,它们的LUMO低。基于这些染料的DSSC在70摄氏度的光线下浸泡2000小时显示出极好的稳定性。经过长期稳定性测试后,基于T120和T147的电池仍保持其初始效率,而T162和N719的效率分别降低了18%和40%。

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