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Effect of the second chromophore energy gap on photo-induced electron injection in di-chromophoric porphyrin-sensitized solar cells

机译:第二发色团能隙对双色卟啉敏化太阳能电池中光诱导电子注入的影响

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摘要

This work investigates the effect of the second chromophore energy gap on charge generation in porphyrin-based di-chromophoric dye-sensitized solar cells (DSSCs). Three di-chromophoric porphyrin dyes (PorY, PorO and PorR) containing three organic chromophores with decreasing frontier orbital energy offsets, including a carbazole-triphenylamine chromophore (yellow, Y), a carbazole fused-thiophene chromophore (orange, O) or a carbazole-thiophene benzothiadiazole thiophene chromophore (red, R), were investigated using optical and electrochemical methods, steady-state photoluminescence and photovoltaic device characterization. Energy transfer from the organic chromophore to the porphyrin was suggested in PorY and PorO as the main charge generation mechanism in DSSCs using these di-chromophoric dyes. On the other hand, electron transfer from the photo-excited porphyrin to the organic chromophore as a competing pathway leading to the loss of photocurrent is suggested for PorR-sensitized solar cells. The latter pathway leading to a loss of photocurrent is due to the lower lying lowest unoccupied molecular orbital of the additional organic chromophore (R) and suggests the limitation of the current di-chromophoric approach to increase the overall efficiency of DSSCs.
机译:这项工作调查了第二个发色团能隙对基于卟啉的双发色染料敏化太阳能电池(DSSC)中电荷产生的影响。三种双发色卟啉染料(PorY,PorO和PorR),包含三种有机发色团,其前沿轨道能量偏移减小,包括咔唑-三苯胺发色团(黄色,Y),咔唑稠合噻吩发色团(橙色,O)或咔唑-噻吩苯并噻二唑噻吩发色团(红色,R)使用光学和电化学方法,稳态光致发光和光伏器件表征进行了研究。使用这些双发色染料,在PorY和PorO中提出了从有机发色团到卟啉的能量转移,这是DSSC中主要的电荷产生机理。另一方面,对于PorR敏化的太阳能电池,建议将电子从光激发的卟啉转移至有机发色团,作为导致光电流损失的竞争途径。导致光电流损失的后一种途径是由于附加有机生色团(R)的较低的最低未占据分子轨道引起的,并暗示了当前双发色方法增加DSSC总体效率的局限性。

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