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Effect of Anchoring Groups on Electron Transfer at Porphyrins-TiO2 Interfaces in Dye-Sensitized Solar Cell Application

机译:锚定组对染料敏化太阳能电池应用中卟啉-TiO2界面电子转移的影响

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Porphyrin has excellent optical properties as required in solar cell applications,for example,high molar extinction coefficient and high quantum efficiency(≈80%).Excellent optical properties make porphyrin a good candidate as a photosensitizer,that is,in dye-sensitized solar cells(DSSC).Nevertheless,porphyrins exhibit poor charge transfer resulting in poor cell performance.Poor charge transfer in porphyrins is due to the aggregation,low porphyrin adsorption,and weakly bound porphyrins on the TiO2 surface.Anchoring group attached to the porphyrin ring may play an important role to increase both charge transfer and porphyrin adsorption.This study adopts a strategy to increase the electron transfer from porphyrins to TiO2 by applying different anchoring groups.This strategy aims both to reduce the aggregation and to enhance the binding between porphyrin and TiO2 surface.The presence of methyl and carboxylic acid as the anchoring groups in the porphyrin system can increase the electronic coupling between the porphyrin and the TiO2 surface while also hindering the aggregation.Thus,the presence of anchoring groups improves the electron injection efficiency and cell performance.The type and position of the anchoring groups strongly contribute to the electron injection,thus is discussed in detail.
机译:卟啉在太阳能电池应用中具有优异的光学性能,例如高摩尔消光系数和高量子效率(≈80%)。优异的光学性质使卟啉成为光敏剂的良好候选剂,即在染料敏化太阳能电池中(DSSC)。无管,卟啉表现出差的电荷转移,导致电池性能差。卟啉的泊贷电荷转移是由于聚集,低卟啉吸附和TiO 2表面上的弱结合卟啉。附着于卟啉环上的Shanchoring组可能发挥作用提高电荷转移和卟啉吸附的重要作用。本研究采用一种通过施加不同的锚定基团将电子转移从卟啉转移到TiO2的策略。该策略旨在减少聚集并增强卟啉和TiO2之间的结合。甲基和羧酸作为卟啉系统中的锚固基团的存在可以增加电子C.卟啉和TiO2表面之间的展开,同时也阻碍了聚集。锚定组的存在改善了电子注入效率和电池性能。锚定组的类型和位置强烈贡献给电子注入,因此详细讨论。

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