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Efficiency enhancement in dye-sensitized solar cells with co-sensitized, triple layered photoanode by enhanced light scattering and spectral responses

机译:通过增强的光散射和光谱响应,具有共敏化,三层光电码的染料敏化太阳能电池效率增强

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A method for impressive efficiency enhancement in TiO$_2$-based nanoparticle (NP) dye-sensitized solar cells (DSSCs) is demonstrated by using a co-sensitized triple layered photoanode, comprising a nanofibre (NF) layer of TiO$_2$ sandwiched between two TiO$_2$ P25 NP layers. Rose Bengal (RB) and Eosin-Y (EY) dyes are used for the co-sensitization. DSSCs with conventional TiO$_2$ (P25) NP bi-layer photoanode (NP/NP), sensitized with EY, showed an overall power conversion efficiency (${eta}$) of 0.89% under the illumination of 100 mW cm$^{–2}$ (AM 1.5) with iodide-based liquid electrolyte. Whereas DSSCs fabricated with triple layered photoanode (NP/NF/NP) with the same total thickness and sensitized with EY yielded 1.77% efficiency under the same illumination conditions, showing an impressive ${sim}$99% enhancement in the overall power conversion efficiency. The DSSCs fabricated with RB-sensitized NP/NP and NP/NF/NP photoanodes showed 0.25 and 0.73% efficiencies, respectively. Upon optimization, DSSCs fabricated with co-sensitized NP/NP bilayer and NP/NF/NP triple layer photoanodes showed 1.04 and 2.09% efficiencies, respectively, showing again an impressive ${sim}$100% enhancement in ${eta}$ due to the co-sensitized triple layer photoanode structure. Increase in the short circuit photocurrent density, UV–visible absorptions measurements, incident photon to current efficiency and electrochemical impedance spectroscopic measurements confirmed that this enhancement is very likely due to the enhanced light harvesting and reduction of recombination of photoelectrons combined with the enhanced spectral responses of the cosensitized triple layered photoanode.
机译:通过使用共同敏化的三层光电阳极对TiO $ _2 $基纳米粒子(NP)染色的太阳能电池(DSSCs)进行令人印象深刻的效率增强方法,包括纳米纤维(NF)TiO $ _2 $夹在中间的纳米纤维(NF)层在两个tio $ _2 $ p25 np层之间。玫瑰孟加拉(RB)和Eosin-Y(Ey)染料用于共敏化。具有常规TIO的DSSCS $ _2 $(P25)NP双层PHOTENADE(NP / NP),致敏EY致敏,在100 MW CM $的照明下,整体电力转换效率($ { eta} $)为0.89% ^ { - 2} $(上午1.5),碘化物基液体电解质。虽然具有相同总厚度的三层光电码(NP / NF / NP)制造的DSSCs,但在相同的照明条件下效率为1.77%,显示出令人印象深刻的$ { SIM}的整体电力转换效率99% 。用RB敏化的NP / NP和NP / NF / NP光电码制造的DSSCs分别显示0.25%和0.73%的效率。优化后,用共同敏化的NP / NP双层和NP / NF / NP三层光阳极制造的DSSCs分别显示1.04和2.09%,再次显示令人印象深刻的$ { SIM} $ { eta} $ 100%增强由于共同敏感的三层光电结构结构。增加短路光电流密度,UV可见吸收测量,入射光子对电流效率和电化学阻抗光谱测量值证实,这种增强很可能是由于增强光电子的重组和减少光电子的重组和减少的增强的光谱响应辅助三层光电码。

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