Citation:
Yang Xiao, Li Wei, Xu Fang, Wang Tianyang, Liu Dongzhi, Zhou Xueqin. Application of Charge Separation Dyes in Solid-State Dye Sensitized Solar Cells[J]. Chemistry,
;2019, 82(8): 737-742,748.
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The dyes as the particularly important material component of the dye sensitized solar cells (DSSC), carry out two functions:absorbing light energy and initiating the electrical current. And the dyes with long-lived charge-separated state can effectively improve electron injection efficiency, suppress charge recombination, and thereby improve device performance. All-solid-state dye-sensitized solar cells (ssDDSC) were fabricated using the charge separation (CS) dyes as photosensitizer and spiro-OMeTAD as hole-transport material. The effect of TiO2 film thickness on the performance of ssDDSC was analyzed. When the TiO2 film thickness was 1.2 μm, the device performance was optimal. The influence of dye structure on device performance was also discussed. The ssDSSC based on MTPABT-Pyc has the best performance, with photocurrent of 7.38 mA/cm2 and efficiency of 3.06%. The dye MTPABT-Pyc had similar light-harvesting ability compared to the charge-transfer dye (CT type) MTPAcc, but its efficiency is 16% higher than to that of MTPAcc (2.64%). These results indicate that the charge-separated state of the CS-type dye has a superiority for the suppression of charge recombination and the transport of holes.
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